diff --git a/frads/__init__.py b/frads/__init__.py
index 6b7c3e8..75e0f73 100755
--- a/frads/__init__.py
+++ b/frads/__init__.py
@@ -50,9 +50,9 @@
import logging
-from .epjson2rad import epjson2rad
+from .epjson2rad import epjson_to_rad
-from .eprad import EPModel, EnergyPlusSetup, ep_datetime_parser
+from .eprad import EnergyPlusModel, EnergyPlusSetup, ep_datetime_parser
from .matrix import (
load_matrix,
@@ -88,11 +88,20 @@
__all__ = [
"AIR",
"ARGON",
- "EPModel",
+ "EnergyPlusModel",
"EnergyPlusSetup",
+ "ep_datetime_parser",
+ "epjson_to_rad",
"FivePhaseMethod",
+ "gen_grid",
+ "gen_perez_sky",
+ "genskymtx",
"GlazingSystem",
"KRYPTON",
+ "load_matrix",
+ "matrix_multiply_rgb",
+ "parse_epw",
+ "parse_wea",
"SensorSender",
"SkyReceiver",
"SunReceiver",
@@ -100,19 +109,10 @@
"SurfaceSender",
"ThreePhaseMethod",
"TwoPhaseMethod",
+ "unpack_primitives",
"ViewSender",
"WeaData",
"WeaMetaData",
"WorkflowConfig",
"XENON",
- "ep_datetime_parser",
- "epjson2rad",
- "gen_grid",
- "gen_perez_sky",
- "genskymtx",
- "load_matrix",
- "matrix_multiply_rgb",
- "parse_epw",
- "parse_wea",
- "unpack_primitives",
]
diff --git a/frads/epjson2rad.py b/frads/epjson2rad.py
index 2c481a1..0e0fee7 100755
--- a/frads/epjson2rad.py
+++ b/frads/epjson2rad.py
@@ -587,7 +587,7 @@ def parse_epjson(epjs: dict) -> tuple:
return site, zones, constructions, materials, matrices
-def epjson2rad(epmodel, epw=None) -> dict:
+def epjson_to_rad(epmodel, epw=None) -> dict:
"""Command-line program to convert a energyplus model into a Radiance model."""
site, zones, constructions, materials, matrices = parse_epjson(epmodel.epjs)
# building_name = epjs["Building"].popitem()[0].replace(" ", "_")
diff --git a/frads/eprad.py b/frads/eprad.py
index 7c5c09c..e9d13d9 100644
--- a/frads/eprad.py
+++ b/frads/eprad.py
@@ -5,21 +5,28 @@
from datetime import datetime, timedelta
import json
from pathlib import Path
-from typing import Optional
+from typing import Optional, Callable
from frads import sky
+from frads.window import GlazingSystem
import copy
from pyenergyplus.api import EnergyPlusAPI
-class EPModel:
+class EnergyPlusModel:
+ """Load and parse input file into a JSON object.
+
+ If the input file is in .idf format, use command-line EnergyPlus program \
+ to convert it to epJSON format
+
+ Args:
+ fpath: input file path (.idf or .epJSON)
+
+ Example:
+ >>> model = EnergyPlusModel(Path("model.idf"))
+ """
+
def __init__(self, fpath: Path):
- """Load and parse input file into a JSON object.
- If the input file is in .idf format, use command-line
- energyplus program to convert it to epJSON format
- Args:
- fpath: input file path
- """
self.api = EnergyPlusAPI()
epjson_path: Path
if fpath.suffix == ".idf":
@@ -36,15 +43,16 @@ def __init__(self, fpath: Path):
raise Exception(f"Unknown file type {fpath}")
with open(epjson_path) as rdr:
self.epjs = json.load(rdr)
- self.actuators_list = None
@property
- def cfs(self):
+ def complex_fenestration_states(self):
"""
Example:
- >>> model.cfs
+ >>> model.complex_fenestration_states
"""
- return list(self.epjs["Construction:ComplexFenestrationState"].keys())
+ if "Construction:ComplexFenestrationState" in self.epjs:
+ return list(self.epjs["Construction:ComplexFenestrationState"].keys())
+ return []
@property
def windows(self):
@@ -52,34 +60,62 @@ def windows(self):
Example:
>>> model.windows
"""
- return list(self.epjs["FenestrationSurface:Detailed"].keys())
+ if "FenestrationSurface:Detailed" in self.epjs:
+ return list(self.epjs["FenestrationSurface:Detailed"].keys())
+ return []
@property
- def walls_window(self):
- walls_wndo = []
- for k, v in self.epjs["FenestrationSurface:Detailed"].items():
- walls_wndo.append(v["building_surface_name"])
- return walls_wndo
+ def window_walls(self):
+ """
+ Example:
+ >>> model.window_walls
+ """
+ wndo_walls = []
+ if "FenestrationSurface:Detailed" in self.epjs:
+ for k, v in self.epjs["FenestrationSurface:Detailed"].items():
+ wndo_walls.append(v["building_surface_name"])
+ return wndo_walls
@property
def floors(self):
- floor = []
- for k, v in self.epjs["BuildingSurface:Detailed"].items():
- if v["surface_type"] == "Floor":
- floor.append(k)
- return floor
+ """
+ Example:
+ >>> model.floors
+ """
+ floors = []
+ if "BuildingSurface:Detailed" in self.epjs:
+ for k, v in self.epjs["BuildingSurface:Detailed"].items():
+ if v["surface_type"] == "Floor":
+ floors.append(k)
+ return floors
@property
- def lighting_zone(self):
+ def lighting_zones(self):
+ """
+ Example:
+ >>> model.lighting_zones
+ """
if "Lights" in self.epjs:
return list(self.epjs["Lights"].keys())
- return "No Lights"
+ return []
@property
def zones(self):
- return list(self.epjs["Zone"].keys())
+ """
+ Example:
+ >>> model.zones
+ """
+ if "Zone" in self.epjs:
+ return list(self.epjs["Zone"].keys())
+ return []
+
+ def _add(self, key: str, obj: dict or str):
+ """Add an object to the epjs dictionary.
- def _add(self, key, obj):
+ Args:
+ key: Key of the object to be added.
+ obj: Object to be added.
+ """
if key in self.epjs:
# merge
self.epjs[key] = {**self.epjs[key], **obj}
@@ -87,17 +123,14 @@ def _add(self, key, obj):
# add
self.epjs[key] = obj
- def add_cfs(self, glazing_system) -> None:
- """
- Add CFS to an EnergyPlus JSON file.
+ def add_glazing_system(self, glazing_system: GlazingSystem):
+ """Add glazing system to EnergyPlusModel's epjs dictionary.
Args:
- solar_results: Solar results from pywincalc.
- photopic_results: Photopic results from pywincalc.
- glazing_system: Glazing system from pywincalc.
- epjs: EnergyPlus JSON file.
- Returns:
- None
+ glazing_system: GlazingSystem object
+
+ Example:
+ >>> model.add_glazing_system(glazing_system1)
"""
name = glazing_system.name
if (
@@ -111,7 +144,7 @@ def add_cfs(self, glazing_system) -> None:
solar_results = glazing_system.solar_results
photopic_results = glazing_system.photopic_results
- # Initialize Contruction:ComplexFenestrationState dictionary with system and outer layer names
+ # Initialize Construction:ComplexFenestrationState dictionary with system and outer layer names
construction_complex_fenestration_state = {}
@@ -342,117 +375,151 @@ def add_cfs(self, glazing_system) -> None:
"construction_name"
] = cfs
- def add_lighting(self, zone, replace=False) -> None:
- """Add lighting objects to the epjs dictionary."""
+ def add_lighting(self, zone: str, replace: bool = False):
+ """Add lighting object to EnergyPlusModel's epjs dictionary.
+
+ Args:
+ zone: Zone name to add lighting to.
+ replace: If True, replace existing lighting object in zone.
+
+ Raises:
+ ValueError: If zone not found in model.
+ ValueError: If lighting already exists in zone and replace is False.
+
+ Example:
+ >>> model.add_lighting("Zone1")
+ """
+ if zone in self.zones:
+ pass
+ else:
+ raise ValueError(f"Zone = {zone} not found in model.")
dict2 = copy.deepcopy(self.epjs["Lights"])
if self.epjs["Lights"] is not None:
- for l in dict2:
+ for light in dict2:
if (
- self.epjs["Lights"][l][
+ self.epjs["Lights"][light][
"zone_or_zonelist_or_space_or_spacelist_name"
]
== zone
):
- if replace == True:
- del self.epjs["Lights"][l]
+ if replace:
+ del self.epjs["Lights"][light]
else:
raise ValueError(
- "Lighting already exists in this zone. If want to replace, set replace=True."
+ f"Lighting already exists in zone = {zone}. "
+ "To replace, set replace=True."
)
- # Initialize lighting schedule type limit dictionary
- schedule_type_limit = {}
- schedule_type_limit["on_off"] = {
- "lower_limit_value": 0,
- "upper_limit_value": 1,
- "numeric_type": "Discrete",
- "unit_type": "Availability",
+ # Add lighting schedule type limit to epjs dictionary
+ schedule_type_limit = {
+ "on_off": {
+ "lower_limit_value": 0,
+ "upper_limit_value": 1,
+ "numeric_type": "Discrete",
+ "unit_type": "Availability",
+ }
}
+ self._add("ScheduleTypeLimits", schedule_type_limit)
- # Initialize lighting schedule dictionary
- lighting_schedule = {}
- lighting_schedule["constant_off"] = {
- "schedule_type_limits_name": "on_off",
- "hourly_value": 0,
+ # Add lighting schedule to epjs dictionary
+ lighting_schedule = {
+ "constant_off": {
+ "schedule_type_limits_name": "on_off",
+ "hourly_value": 0,
+ }
}
-
- # Initialize lights dictionary with a constant-off schedule for each zone
-
- lights = {}
- lights[f"Light_{zone}"] = {
- "design_level_calculation_method": "LightingLevel",
- "fraction_radiant": 0,
- "fraction_replaceable": 1,
- "fraction_visible": 1,
- "lighting_level": 0,
- "return_air_fraction": 0,
- "schedule_name": "constant_off",
- "zone_or_zonelist_or_space_or_spacelist_name": zone,
+ self._add("Schedule:Constant", lighting_schedule)
+
+ # Add lighting to epjs dictionary
+ lights = {
+ f"Light_{zone}": {
+ "design_level_calculation_method": "LightingLevel",
+ "fraction_radiant": 0,
+ "fraction_replaceable": 1,
+ "fraction_visible": 1,
+ "lighting_level": 0,
+ "return_air_fraction": 0,
+ "schedule_name": "constant_off",
+ "zone_or_zonelist_or_space_or_spacelist_name": zone,
+ }
}
+ self._add("Lights", lights)
- mappings = {
- "ScheduleTypeLimits": schedule_type_limit,
- "Schedule:Constant": lighting_schedule,
- "Lights": lights,
- }
+ def add_output(
+ self, output_name: str, output_type: str, reporting_frequency: str = "Timestep"
+ ):
+ """Add an output variable or meter to the epjs dictionary.
- for key, obj in mappings.items():
- self._add(key, obj)
+ Args:
+ output_name: Name of the output variable or meter.
+ output_type: Type of the output. "variable" or "meter".
+ reporting_frequency: Reporting frequency of the output variable or meter.
+
+ Raises:
+ raise ValueError("output_type must be 'variable' or 'meter'.")
+
+ Example:
+ >>> model.add_output("Zone Mean Air Temperature", "variable")
+ >>> model.add_output("Cooling:Electricity", "meter")
+ """
+
+ if output_type == "variable":
+ self._add_output_variable(output_name, reporting_frequency)
+ elif output_type == "meter":
+ self._add_output_meter(output_name, reporting_frequency)
+ else:
+ raise ValueError("output_type must be 'variable' or 'meter'.")
+
+ def _add_output_variable(self, output_name: str, reporting_frequency):
+ """Add an output variable to the epjs dictionary.
- def request_ep_output_variable(self, opt_name: str):
+ Args:
+ output_name: Name of the output variable.
+ reporting_frequency: Reporting frequency of the output variable.
+ """
i = 1
if "Output:Variable" not in self.epjs:
self.epjs["Output:Variable"] = {}
for output in self.epjs["Output:Variable"].values():
i += 1
- if output["variable_name"] == opt_name:
+ if output["variable_name"] == output_name:
break
else:
self.epjs["Output:Variable"][f"Output:Variable {i}"] = {
"key_value": "*",
- "reporting_frequency": "Timestep",
- "variable_name": opt_name,
+ "reporting_frequency": reporting_frequency,
+ "variable_name": output_name,
}
- def request_ep_output_meter(self, opt_name: str):
+ def _add_output_meter(self, output_name: str, reporting_frequency):
+ """Add an output meter to the epjs dictionary.
+
+ Args:
+ output_name: Name of the output meter.
+ reporting_frequency: Reporting frequency of the output meter.
+ """
i = 1
if "Output:Meter" not in self.epjs:
self.epjs["Output:Meter"] = {}
for output in self.epjs["Output:Meter"].values():
i += 1
- if output["key_name"] == opt_name:
+ if output["key_name"] == output_name:
break
else:
self.epjs["Output:Meter"][f"Output:Meter {i}"] = {
- "key_name": opt_name,
- "reporting_frequency": "Timestep",
+ "key_name": output_name,
+ "reporting_frequency": reporting_frequency,
}
- def actuator_func(self, state):
- actuators_list = []
- if self.actuators_list is None:
- list = self.api.api.listAllAPIDataCSV(state).decode("utf-8")
- for line in list.split("\n"):
- if line.startswith("Actuator"):
- actuators_list.append(line.split(",", 1)[1])
- self.actuators_list = actuators_list
- else:
- self.api.api.stopSimulation(state)
-
- def gen_list_of_actuators(self):
- with EnergyPlusSetup(self) as ep:
- ep.set_callback(
- "callback_begin_system_timestep_before_predictor", self.actuator_func
- )
- ep.run(
- weather_file="USA_CA_Oakland.Intl.AP.724930_TMY3.epw",
- output_prefix="test1",
- )
+def ep_datetime_parser(inp: str):
+ """Parse date and time from EnergyPlus output.
-def ep_datetime_parser(inp):
+ Args:
+ inp: Date and time string from EnergyPlus output.
+ """
date, time = inp.strip().split()
month, day = [int(i) for i in date.split("/")]
hr, mi, sc = [int(i) for i in time.split(":")]
@@ -462,19 +529,24 @@ def ep_datetime_parser(inp):
return datetime(1900, month, day, hr, mi, sc)
-class Handles:
- def __init__(self):
- self.variable = {}
- self.actuator = {}
- self.construction = {}
+class EnergyPlusSetup:
+ """Class for setting up and running EnergyPlus simulations.
+ Args:
+ epmodel: EnergyPlusModel object
-class EnergyPlusSetup:
- def __init__(self, epmodel):
+ Example:
+ >>> epsetup = EnergyPlusSetup(epmodel, epw="USA_CA_Oakland.Intl.AP.724930_TMY3.epw")
+ """
+
+ def __init__(self, epmodel: EnergyPlusModel, weather_file: Optional[str] = None):
self.api = epmodel.api
+ self.epw = weather_file
self.epjs = epmodel.epjs
self.state = self.api.state_manager.new_state()
- self.handles = Handles()
+ self.variable_handles = {}
+ self.actuator_handles = {}
+ self.construction_handles = {}
loc = list(self.epjs["Site:Location"].values())[0]
self.wea_meta = sky.WeaMetaData(
@@ -486,7 +558,9 @@ def __init__(self, epmodel):
timezone=(0 - loc["time_zone"]) * 15,
)
- self.api.runtime.callback_begin_new_environment(self.state, self.get_handles())
+ self.api.runtime.callback_begin_new_environment(self.state, self._get_handles())
+ self.actuators = None
+ self._get_list_of_actuators()
def __enter__(self):
return self
@@ -494,100 +568,151 @@ def __enter__(self):
def __exit__(self, exc_type, exc_value, exc_tb):
self.api.state_manager.delete_state(self.state)
- def actuate(self, name: str, key: str, value):
- """
- :param component_type: The actuator category, e.g. "Weather Data"
- :param name: The name of the actuator to retrieve, e.g. "Outdoor Dew Point"
- :param key: The instance of the variable to retrieve, e.g. "Environment"
+ def _actuator_func(self, state):
+ actuators_list = []
+ if self.actuators is None:
+ list = self.api.api.listAllAPIDataCSV(state).decode("utf-8")
+ for line in list.split("\n"):
+ if line.startswith("Actuator"):
+ line = line.replace(";", "")
+ actuators_list.append(line.split(",", 1)[1])
+ self.actuators = actuators_list
+ else:
+ self.api.api.stopSimulation(state)
- """
- if key not in self.handles.actuator:
- raise ValueError("Actuator not found", name, key)
- self.api.exchange.set_actuator_value(
- self.state, self.handles.actuator[key][name], value
+ def _get_list_of_actuators(self):
+ with open("epmodel.json", "w") as wtr:
+ json.dump(self.epjs, wtr)
+
+ actuator_state = self.api.state_manager.new_state()
+ self.api.runtime.set_console_output_status(actuator_state, False)
+ method = getattr(
+ self.api.runtime, "callback_begin_system_timestep_before_predictor"
)
+ method(actuator_state, self._actuator_func)
- def request_actuator(self, state, component_type: str, name: str, key: str):
- """
- :param component_type: The actuator category, e.g. "Weather Data"
- :param name: The name of the actuator to retrieve, e.g. "Outdoor Dew Point"
- :param key: The instance of the variable to retrieve, e.g. "Environment"
+ if self.epw is not None:
+ self.api.runtime.run_energyplus(
+ actuator_state, ["-p", "actuator", "-w", self.epw, "epmodel.json"]
+ )
+ elif "SizingPeriod:DesignDay" in self.epjs:
+ self.api.runtime.run_energyplus(actuator_state, ["-D", "epmodel.json"])
+ else:
+ raise ValueError(
+ "Specify weather file in EnergyPlusSetup "
+ "or model design day in EnergyPlusModel."
+ )
+ self.api.state_manager.delete_state(actuator_state)
+
+ def actuate(self, component_type: str, name: str, key: str, value: float):
+ """Set or update the operating value of an actuator in the EnergyPlus model.
+
+ If actuator has not been requested previously, it will be requested.
+ Set the actuator value to the value specified.
+
+ Args:
+ component_type: The actuator category, e.g. "Weather Data"
+ name: The name of the actuator to retrieve, e.g. "Outdoor Dew Point"
+ key: The instance of the variable to retrieve, e.g. "Environment"
+ value: The value to set the actuator to
+
+ Raises:
+ ValueError: If the actuator is not found
+ Example:
+ >>> epsetup.actuate("Weather Data", "Outdoor Dew Point", "Environment", 10)
"""
- if (key, name) in self.handles.actuator.items():
- pass
- else:
+ if key not in self.actuator_handles: # check if key exists in actuator handles
+ self.actuator_handles[key] = {}
+ if (
+ name not in self.actuator_handles[key]
+ ): # check if name exists in actuator handles
handle = self.api.exchange.get_actuator_handle(
- state, component_type, name, key
+ self.state, component_type, name, key
)
if handle == -1:
+ del self.actuator_handles[key]
raise ValueError(
- f"Actuator {component_type} {name} {key} not found", key
+ "Actuator is not found: "
+ f"component_type = {component_type}, name = {name}, key = {key}."
)
- # check key exists
- if key not in self.handles.actuator:
- self.handles.actuator[key] = {}
- self.handles.actuator[key][name] = handle
+ self.actuator_handles[key][name] = handle
- def get_variable_value(self, name: str, key: str):
+ # set actuator value
+ self.api.exchange.set_actuator_value(
+ self.state, self.actuator_handles[key][name], value
+ )
+
+ def get_variable_value(self, name: str, key: str) -> float:
+ """Get the value of a variable in the EnergyPlus model during runtime.
+
+ Args:
+ name: The name of the variable to retrieve, e.g. "Outdoor Dew Point"
+ key: The instance of the variable to retrieve, e.g. "Environment"
+
+ Returns:
+ The value of the variable
+
+ Raises:
+ ValueError: If the variable is not found
+
+ Example:
+ >>> epsetup.get_variable_value("Outdoor Dew Point", "Environment")
+ """
return self.api.exchange.get_variable_value(
- self.state, self.handles.variable[key][name]
+ self.state, self.variable_handles[key][name]
)
def request_variable(self, name: str, key: str):
- if (key, name) in self.handles.actuator.items():
+ """Request a variable from the EnergyPlus model during runtime.
+
+ Args:
+ name: The name of the variable to retrieve, e.g. "Outdoor Dew Point"
+ key: The instance of the variable to retrieve, e.g. "Environment"
+
+ Example:
+ >>> epsetup.request_variable("Outdoor Dew Point", "Environment")
+ """
+ if key not in self.variable_handles:
+ self.variable_handles[key] = {}
+ if name in self.variable_handles[key]:
pass
else:
self.api.exchange.request_variable(self.state, name, key)
- # check key exists
- if key not in self.handles.variable:
- self.handles.variable[key] = {}
- self.handles.variable[key][name] = None
+ self.variable_handles[key][name] = None
- def get_handles(self):
+ def _get_handles(self):
def callback_function(state):
- for key in self.handles.variable:
+ for key in self.variable_handles:
try:
- for name in self.handles.variable[key]:
+ for name in self.variable_handles[key]:
handle = self.api.exchange.get_variable_handle(state, name, key)
if handle == -1:
- raise ValueError("Variable handle not found", name, key)
- self.handles.variable[key][name] = handle
+ raise ValueError(
+ "Variable handle not found: "
+ f"name = {name}, key = {key}"
+ )
+ self.variable_handles[key][name] = handle
except TypeError:
- print("No variables requested for", self.handles.variable, key)
+ print("No variables requested for", self.variable_handles, key)
if "Construction:ComplexFenestrationState" in self.epjs:
for cfs in self.epjs["Construction:ComplexFenestrationState"]:
handle = self.api.api.getConstructionHandle(state, cfs.encode())
if handle == -1:
- raise ValueError("Construction handle not found", cfs)
- self.handles.construction[cfs] = handle
-
- if "FenestrationSurface:Detailed" in self.epjs:
- for window in self.epjs["FenestrationSurface:Detailed"]:
- self.request_actuator(
- state,
- component_type="Surface",
- name="Construction State",
- key=window,
- )
-
- for light in self.epjs.get("Lights", []):
- self.request_actuator(
- state, component_type="Lights", name="Electricity Rate", key=light
- )
-
- self.request_variable("Lights Electricity Energy", light)
- var_handle = self.api.exchange.get_variable_handle(
- state, "Lights Electricity Energy", light
- )
- if var_handle == -1:
- raise ValueError("Light variable not found", light)
- self.handles.variable[light]["Lights Electricity Energy"] = var_handle
+ raise ValueError(
+ "Construction handle not found: " f"Construction = {cfs}"
+ )
+ self.construction_handles[cfs] = handle
return callback_function
- def get_datetime(self):
+ def get_datetime(self) -> datetime:
+ """Get the current date and time from EnergyPlus
+
+ Returns:
+ datetime object
+ """
year = self.api.exchange.year(self.state)
month = self.api.exchange.month(self.state)
day = self.api.exchange.day_of_month(self.state)
@@ -610,14 +735,56 @@ def get_datetime(self):
def run(
self,
- weather_file: Optional[str] = None,
- output_directory: Optional[str] = None,
+ output_directory: Optional[str] = "./",
output_prefix: Optional[str] = "eplus",
+ output_suffix: Optional[str] = "L",
+ weather_file: Optional[str] = None,
+ silent: bool = False,
+ annual: bool = False,
+ design_day: bool = False,
):
- options = {"-w": weather_file, "-d": output_directory, "-p": output_prefix}
- # check if any of options are None, if so, dont pass them to run_energyplus
- options = {k: v for k, v in options.items() if v is not None}
- opt = [item for sublist in options.items() for item in sublist]
+ """Run EnergyPlus simulation.
+
+ Args:
+ output_directory: Output directory path. (default: None) \
+ If None, use current directory.
+ output_prefix: Prefix for output files. (default: eplus)
+ output_suffix: Suffix style for output files. (default: L)
+ L: Legacy (e.g., eplustbl.csv)
+ C: Capital (e.g., eplusTable.csv)
+ D: Dash (e.g., eplus-table.csv)
+ silent: If True, do not print EnergyPlus output to console. (default: False)
+ annual: If True, force run annual simulation. (default: False)
+ design_day: If True, force run design-day-only simulation. (default: False)
+
+ Example:
+ >>> epsetup.run(output_prefix="test1", silent=True)
+ """
+ opt = ["-d", output_directory, "-p", output_prefix, "-s", output_suffix]
+
+ if weather_file is not None:
+ opt.extend(["-w", weather_file])
+ elif design_day:
+ if "SizingPeriod:DesignDay" in self.epjs:
+ opt.append("-D")
+ else:
+ raise ValueError(
+ "Design day simulation requested, "
+ "but no design day found in EnergyPlus model."
+ )
+ else:
+ raise ValueError(
+ "Specify weather file in EnergyPlusSetup or "
+ "run with design_day = True for design-day-only simulation."
+ )
+
+ if annual:
+ if weather_file is not None:
+ opt.append("-a")
+ else:
+ raise ValueError(
+ "Annual simulation requested, but no weather file found."
+ )
if "OutputControl:Files" not in self.epjs:
self.epjs["OutputControl:Files"] = {
@@ -627,14 +794,27 @@ def run(
with open(f"{output_prefix}.json", "w") as wtr:
json.dump(self.epjs, wtr)
+ self.api.runtime.set_console_output_status(self.state, not silent)
self.api.runtime.run_energyplus(self.state, [*opt, f"{output_prefix}.json"])
- def set_callback(self, method_name: str, func):
+ def set_callback(self, method_name: str, func: Callable):
+ """Set callback function for EnergyPlus runtime API.
+
+ Args:
+ method_name: Name of the method to set callback for.
+ func: Callback function.
+
+ Raises:
+ AttributeError: If method_name is not found in EnergyPlus runtime API.
+
+ Example:
+ >>> epsetup.set_callback("callback_begin_system_timestep_before_predictor", func)
+ """
try:
method = getattr(self.api.runtime, method_name)
except AttributeError:
raise AttributeError(
- f"Method {method_name} not found in EnergyPlus runtime API"
+ f"Method {method_name} not found in EnergyPlus runtime API."
)
# method(self.state, partial(func, self))
method(self.state, func)
diff --git a/test/Resources/2011-SA1.xml b/test/Resources/2011-SA1.xml
new file mode 100644
index 0000000..934235f
--- /dev/null
+++ b/test/Resources/2011-SA1.xml
@@ -0,0 +1,1371 @@
+
+
+ System
+
+
+
+ Satine 5500 5%, White Pearl
+ Nysan
+ 1
+ Other
+ 0.15
+ 0.79626
+ 0.79626
+ 0.10916
+ 0.049855
+ @
+
+
+ Columns
+
+ LBNL/Klems Full
+
+ 0
+
+ 0
+ 5
+
+ 1
+
+
+ 10
+
+ 5
+ 15
+
+ 8
+
+
+ 20
+
+ 15
+ 25
+
+ 16
+
+
+ 30
+
+ 25
+ 35
+
+ 20
+
+
+ 40
+
+ 35
+ 45
+
+ 24
+
+
+ 50
+
+ 45
+ 55
+
+ 24
+
+
+ 60
+
+ 55
+ 65
+
+ 24
+
+
+ 70
+
+ 65
+ 75
+
+ 16
+
+
+ 82.5
+
+ 75
+ 90
+
+ 12
+
+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Transmission Front
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
+ 2.063833, 0.014938, 0.014938, 0.014938, 0.014938, 0.014938, 0.014938, 0.014938, 0.014938, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.014928, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.015363, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.016716, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017184, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.017510, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.018179, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900, 0.016900,
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+
+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Transmission Back
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+
+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Reflection Front
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
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+
+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Reflection Back
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+
+
+
+
+ System
+ Solar
+ ISO8859-1
+ None
+
+ Transmission Front
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+
+
+
+
+ System
+ Solar
+ ISO8859-1
+ None
+
+ Transmission Back
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+ 0.167364, 0.167990, 0.167990, 0.167990, 0.167990, 0.167990, 0.167990, 0.167990, 0.167990, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.169873, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.173027, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.177485, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.183315, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.190665, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.199871, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664, 0.215664,
+
+
+
+
+
+
diff --git a/test/Resources/CLEAR_3.DAT b/test/Resources/CLEAR_3.DAT
new file mode 100644
index 0000000..c58ab81
--- /dev/null
+++ b/test/Resources/CLEAR_3.DAT
@@ -0,0 +1,134 @@
+{ Units, Wavelength Units } SI Microns
+{ Thickness } 3.048
+{ Conductivity } 1
+{ IR Transmittance } TIR=0
+{ Emissivity, front back } Emis= 0.84 0.84
+{ }
+{ Ef_Source: Material }
+{ Eb_Source: Material }
+{ IGDB_Checksum: -1717699038 }
+{ Product Name: Generic Clear Glass }
+{ Manufacturer: Generic }
+{ NFRC ID: 102 }
+{ Type: Monolithic }
+{ Material: Glass }
+{ Coating Name: N/A }
+{ Coated Side: Neither }
+{ Substrate Filename: N/A }
+{ Appearance: Clear }
+{ Acceptance: # }
+{ Uses: }
+{ Availability: }
+{ Structure: }
+0.300 0.0020 0.0470 0.0480
+0.305 0.0030 0.0470 0.0480
+0.310 0.0090 0.0470 0.0480
+0.315 0.0350 0.0470 0.0480
+0.320 0.1000 0.0470 0.0480
+0.325 0.2180 0.0490 0.0500
+0.330 0.3560 0.0530 0.0540
+0.335 0.4980 0.0600 0.0610
+0.340 0.6160 0.0670 0.0670
+0.345 0.7090 0.0730 0.0740
+0.350 0.7740 0.0780 0.0790
+0.355 0.8180 0.0820 0.0820
+0.360 0.8470 0.0840 0.0840
+0.365 0.8630 0.0850 0.0850
+0.370 0.8690 0.0850 0.0860
+0.375 0.8610 0.0850 0.0850
+0.380 0.8560 0.0840 0.0840
+0.385 0.8660 0.0850 0.0850
+0.390 0.8810 0.0860 0.0860
+0.395 0.8890 0.0860 0.0860
+0.400 0.8930 0.0860 0.0860
+0.410 0.8930 0.0860 0.0860
+0.420 0.8920 0.0860 0.0860
+0.430 0.8920 0.0850 0.0850
+0.440 0.8920 0.0850 0.0850
+0.450 0.8960 0.0850 0.0850
+0.460 0.9000 0.0850 0.0850
+0.470 0.9020 0.0840 0.0840
+0.480 0.9030 0.0840 0.0840
+0.490 0.9040 0.0850 0.0850
+0.500 0.9050 0.0840 0.0840
+0.510 0.9050 0.0840 0.0840
+0.520 0.9050 0.0840 0.0840
+0.530 0.9040 0.0840 0.0840
+0.540 0.9040 0.0830 0.0830
+0.550 0.9030 0.0830 0.0830
+0.560 0.9020 0.0830 0.0830
+0.570 0.9000 0.0820 0.0820
+0.580 0.8980 0.0820 0.0820
+0.590 0.8960 0.0810 0.0810
+0.600 0.8930 0.0810 0.0810
+0.610 0.8900 0.0810 0.0810
+0.620 0.8860 0.0800 0.0800
+0.630 0.8830 0.0800 0.0800
+0.640 0.8790 0.0790 0.0790
+0.650 0.8750 0.0790 0.0790
+0.660 0.8720 0.0790 0.0790
+0.670 0.8680 0.0780 0.0780
+0.680 0.8630 0.0780 0.0780
+0.690 0.8590 0.0770 0.0770
+0.700 0.8540 0.0760 0.0770
+0.710 0.8500 0.0760 0.0760
+0.720 0.8450 0.0750 0.0760
+0.730 0.8400 0.0750 0.0750
+0.740 0.8350 0.0750 0.0750
+0.750 0.8310 0.0740 0.0740
+0.760 0.8260 0.0740 0.0740
+0.770 0.8210 0.0740 0.0740
+0.780 0.8160 0.0730 0.0730
+0.790 0.8120 0.0730 0.0730
+0.800 0.8080 0.0720 0.0720
+0.810 0.8030 0.0720 0.0720
+0.820 0.8000 0.0720 0.0720
+0.830 0.7960 0.0710 0.0710
+0.840 0.7930 0.0700 0.0710
+0.850 0.7880 0.0700 0.0710
+0.860 0.7860 0.0700 0.0700
+0.870 0.7820 0.0740 0.0740
+0.880 0.7800 0.0720 0.0720
+0.890 0.7770 0.0730 0.0740
+0.900 0.7760 0.0720 0.0720
+0.910 0.7730 0.0720 0.0720
+0.920 0.7710 0.0710 0.0710
+0.930 0.7700 0.0700 0.0700
+0.940 0.7680 0.0690 0.0690
+0.950 0.7660 0.0680 0.0680
+0.960 0.7660 0.0670 0.0680
+0.970 0.7640 0.0680 0.0680
+0.980 0.7630 0.0680 0.0680
+0.990 0.7620 0.0670 0.0670
+1.000 0.7620 0.0660 0.0670
+1.050 0.7600 0.0660 0.0660
+1.100 0.7590 0.0660 0.0660
+1.150 0.7610 0.0660 0.0660
+1.200 0.7650 0.0660 0.0660
+1.250 0.7700 0.0650 0.0650
+1.300 0.7770 0.0670 0.0670
+1.350 0.7860 0.0660 0.0670
+1.400 0.7950 0.0670 0.0680
+1.450 0.8080 0.0670 0.0670
+1.500 0.8190 0.0690 0.0690
+1.550 0.8290 0.0690 0.0690
+1.600 0.8360 0.0700 0.0700
+1.650 0.8400 0.0700 0.0700
+1.700 0.8420 0.0690 0.0700
+1.750 0.8420 0.0690 0.0700
+1.800 0.8410 0.0700 0.0700
+1.850 0.8400 0.0690 0.0690
+1.900 0.8390 0.0680 0.0680
+1.950 0.8390 0.0710 0.0710
+2.000 0.8390 0.0690 0.0690
+2.050 0.8400 0.0680 0.0680
+2.100 0.8410 0.0680 0.0680
+2.150 0.8390 0.0690 0.0690
+2.200 0.8300 0.0700 0.0700
+2.250 0.8300 0.0700 0.0700
+2.300 0.8320 0.0690 0.0690
+2.350 0.8320 0.0690 0.0700
+2.400 0.8320 0.0700 0.0700
+2.450 0.8260 0.0690 0.0690
+2.500 0.8220 0.0680 0.0680
+
diff --git a/test/Resources/RefBldgMediumOfficeNew2004_southzone.idf b/test/Resources/RefBldgMediumOfficeNew2004_southzone.idf
new file mode 100644
index 0000000..21a9f10
--- /dev/null
+++ b/test/Resources/RefBldgMediumOfficeNew2004_southzone.idf
@@ -0,0 +1,2576 @@
+! RefBldgMediumOfficeNew2004_Chicago.idf
+!
+! This example file is based on Version 1.3_5.0 and was transitioned to Version 6.0 using the transition utility
+!
+! DOE Commercial Reference Building
+! Medium office, new construction 90.1-2004
+! Version 1.3_5.0
+! EnergyPlus Version 6.0
+! ASHRAE Standards 90.1-2004 and 62-1999
+!
+! Description: Three story, 15 zone office building.
+! Form: Area = 4,982 m2 (53,628 ft2); Number of Stories = 3; Shape = rectangle, Aspect ratio = 1.5
+! Envelope: Envelope thermal properties vary with climate according to ASHRAE Standard 90.1-2004.
+! Opaque constructions: steel frame walls; built-up flat roof (insulation above deck); slab-on-grade floor
+! Windows: window-to-wall ratio = 33.0%, equal distribution of windows
+! Infiltration in perimeter zones only
+! = 0.4 cfm/ft2 above grade wall area at 0.3 in wc (75 Pa) adjusted to 0.016 in wc (4 Pa).
+! 25% of full value when ventilation system on.
+!
+! HVAC: Packaged MZVAV with plenum zones, gas furnace, electric reheat
+! Economizer per 90.1-2004
+!
+! Int. gains: lights = 10.76 W/m2 (1.0 W/ft2) (building area method);
+! elec. plug loads = 10.76 W/m2 (1.0 W/ft2)
+! gas plug load = 0 W/m2 (0 W/ft2)
+! people = 268 total; 5.38/100 m2 (5.0/1000 ft2)
+! elevators = 2 @ 20 HP each, 91% motor efficiency
+!
+! Detached Shading: None
+! Daylight: None
+! Natural Ventilation: None
+! Zonal Equipment: None
+! Air Primary Loops: VAV with electric reheat
+! Plant Loops: SHWSys1
+! System Equipment Autosize: Yes
+! Purchased Cooling: None
+! Purchased Heating: None
+! Coils: Coil:Cooling:DX:TwoSpeed; Coil:Heating:Fuel; Coil:Heating:Electric
+! Pumps: Yes
+! Boilers: None
+! Chillers: None
+!***** NOTICE *****
+!***** The Reference Buildings were prepared as an account of work sponsored by an *****
+!***** agency of the United States government. Neither the United States *****
+!***** government nor any agency thereof, nor any of their employees, makes *****
+!***** any warranty, express or implied, or assumes any legal liability or *****
+!***** responsibility for the accuracy, completeness, or usefulness of any *****
+!***** information, apparatus, product, or process disclosed, or represents *****
+!***** that its use would not infringe privately owned rights. Reference *****
+!***** herein to any specific commercial product, process, or service by *****
+!***** trade name, trademark, manufacturer, or otherwise does not necessarily *****
+!***** constitute or imply its endorsement, recommendation, or favoring by *****
+!***** the United States government or any agency thereof. The views and *****
+!***** opinions of authors expressed herein do not necessarily state or *****
+!***** reflect those of the United States government or any agency thereof. *****
+!***** Access to and use of the Reference Buildings imposes the following obligations *****
+!***** on the user. The user agrees to credit DOE, NREL, PNNL, and LBNL in *****
+!***** any publication(s) that that result from the use of Reference Buildings. *****
+!***** However, the names of DOE/NREL/PNNL/LBNL may not be used in any *****
+!***** advertising or publicity that implies endorsement or promotion of any *****
+!***** products, services or commercial entities. *****
+! Reference citation for the Commercial Reference Buildings:
+! Deru, M.; Field, K.; Studer, D.; Benne, K.; Griffith, B.; Torcellini, P;
+! Halverson, M.; Winiarski, D.; Liu, B.; Rosenberg, M.; Huang, J.;
+! Yazdanian, M.; Crawley, D. (2010).
+! U.S. Department of Energy Commercial Reference Building Models of the National Building Stock.
+! Washington, DC: U.S. Department of Energy, Energy Efficiency and
+! Renewable Energy, Office of Building Technologies.
+! ***GENERAL SIMULATION PARAMETERS***
+! Number of Zones: 18
+
+ Version,23.1;
+
+ SimulationControl,
+ NO, !- Do Zone Sizing Calculation
+ NO, !- Do System Sizing Calculation
+ YES, !- Do Plant Sizing Calculation
+ NO, !- Run Simulation for Sizing Periods
+ YES, !- Run Simulation for Weather File Run Periods
+ No, !- Do HVAC Sizing Simulation for Sizing Periods
+ 1; !- Maximum Number of HVAC Sizing Simulation Passes
+
+ Building,
+ Ref Bldg Medium Office New2004_v1.3_5.0, !- Name
+ 0.0000, !- North Axis {deg}
+ City, !- Terrain
+ 0.0400, !- Loads Convergence Tolerance Value {W}
+ 0.2000, !- Temperature Convergence Tolerance Value {deltaC}
+ FullInteriorAndExterior, !- Solar Distribution
+ 25, !- Maximum Number of Warmup Days
+ 6; !- Minimum Number of Warmup Days
+
+ RunPeriod,
+ annual, !- Name
+ 1, !- Begin Month
+ 1, !- Begin Day of Month
+ , !- Begin Year
+ 12, !- End Month
+ 31, !- End Day of Month
+ , !- End Year
+ Sunday, !- Day of Week for Start Day
+ No, !- Use Weather File Holidays and Special Days
+ No, !- Use Weather File Daylight Saving Period
+ No, !- Apply Weekend Holiday Rule
+ Yes, !- Use Weather File Rain Indicators
+ Yes; !- Use Weather File Snow Indicators
+
+! ***HOLIDAYS & DAYLIGHT SAVINGS***
+
+ RunPeriodControl:DaylightSavingTime,
+ 2nd Sunday in March, !- Start Date
+ 1st Sunday in November; !- End Date
+
+ RunPeriodControl:SpecialDays,
+ New Years Day, !- Name
+ January 1, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Veterans Day, !- Name
+ November 11, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Christmas, !- Name
+ December 25, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Independence Day, !- Name
+ July 4, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ MLK Day, !- Name
+ 3rd Monday in January, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Presidents Day, !- Name
+ 3rd Monday in February, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Memorial Day, !- Name
+ Last Monday in May, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Labor Day, !- Name
+ 1st Monday in September, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Columbus Day, !- Name
+ 2nd Monday in October, !- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+ RunPeriodControl:SpecialDays,
+ Thanksgiving, !- Name
+ 4th Thursday in November,!- Start Date
+ 1, !- Duration {days}
+ Holiday; !- Special Day Type
+
+! ***SCHEDULE TYPES***
+
+ ScheduleTypeLimits,
+ Any Number; !- Name
+
+ ScheduleTypeLimits,
+ Fraction, !- Name
+ 0.0, !- Lower Limit Value
+ 1.0, !- Upper Limit Value
+ CONTINUOUS; !- Numeric Type
+
+ ScheduleTypeLimits,
+ Temperature, !- Name
+ -60, !- Lower Limit Value
+ 200, !- Upper Limit Value
+ CONTINUOUS; !- Numeric Type
+
+ ScheduleTypeLimits,
+ On/Off, !- Name
+ 0, !- Lower Limit Value
+ 1, !- Upper Limit Value
+ DISCRETE; !- Numeric Type
+
+ ScheduleTypeLimits,
+ Control Type, !- Name
+ 0, !- Lower Limit Value
+ 4, !- Upper Limit Value
+ DISCRETE; !- Numeric Type
+
+ ScheduleTypeLimits,
+ Humidity, !- Name
+ 10, !- Lower Limit Value
+ 90, !- Upper Limit Value
+ CONTINUOUS; !- Numeric Type
+
+ ScheduleTypeLimits,
+ Number; !- Name
+
+! ***ALWAYS ON SCHEDULE***
+
+ Schedule:Compact,
+ ALWAYS_ON, !- Name
+ On/Off, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,1; !- Field 3
+
+! ***MISC SIMULATION PARAMETERS***
+
+ SurfaceConvectionAlgorithm:Inside,TARP;
+
+ SurfaceConvectionAlgorithm:Outside,DOE-2;
+
+ HeatBalanceAlgorithm,ConductionTransferFunction,200.0000;
+
+ ZoneAirHeatBalanceAlgorithm,
+ AnalyticalSolution, !- Algorithm
+ No; !- Do Space Heat Balance for Sizing
+
+ Sizing:Parameters,
+ 1.33, !- Heating Sizing Factor
+ 1.33, !- Cooling Sizing Factor
+ 6; !- Timesteps in Averaging Window
+
+ ConvergenceLimits,
+ 2, !- Minimum System Timestep {minutes}
+ 25; !- Maximum HVAC Iterations
+
+ ShadowCalculation,
+ PolygonClipping, !- Shading Calculation Method
+ Periodic, !- Shading Calculation Update Frequency Method
+ 7, !- Shading Calculation Update Frequency
+ 15000; !- Maximum Figures in Shadow Overlap Calculations
+
+ Timestep,6;
+
+! WeatherFileName=USA_IL_Chicago-OHare_TMY2.epw
+
+ Site:Location,
+ USA IL-CHICAGO-OHARE, !- Name
+ 41.77, !- Latitude {deg}
+ -87.75, !- Longitude {deg}
+ -6.00, !- Time Zone {hr}
+ 190; !- Elevation {m}
+
+ ! CHICAGO_IL_USA Annual Heating 99.6%, MaxDB=-20.6°C
+
+ SizingPeriod:DesignDay,
+ CHICAGO Ann Htg 99.6% Condns DB, !- Name
+ 1, !- Month
+ 21, !- Day of Month
+ WinterDesignDay, !- Day Type
+ -20.6, !- Maximum Dry-Bulb Temperature {C}
+ 0.0, !- Daily Dry-Bulb Temperature Range {deltaC}
+ , !- Dry-Bulb Temperature Range Modifier Type
+ , !- Dry-Bulb Temperature Range Modifier Day Schedule Name
+ Wetbulb, !- Humidity Condition Type
+ -20.6, !- Wetbulb or DewPoint at Maximum Dry-Bulb {C}
+ , !- Humidity Condition Day Schedule Name
+ , !- Humidity Ratio at Maximum Dry-Bulb {kgWater/kgDryAir}
+ , !- Enthalpy at Maximum Dry-Bulb {J/kg}
+ , !- Daily Wet-Bulb Temperature Range {deltaC}
+ 99063., !- Barometric Pressure {Pa}
+ 4.9, !- Wind Speed {m/s}
+ 270, !- Wind Direction {deg}
+ No, !- Rain Indicator
+ No, !- Snow Indicator
+ No, !- Daylight Saving Time Indicator
+ ASHRAEClearSky, !- Solar Model Indicator
+ , !- Beam Solar Day Schedule Name
+ , !- Diffuse Solar Day Schedule Name
+ , !- ASHRAE Clear Sky Optical Depth for Beam Irradiance (taub) {dimensionless}
+ , !- ASHRAE Clear Sky Optical Depth for Diffuse Irradiance (taud) {dimensionless}
+ 0.00; !- Sky Clearness
+
+ ! CHICAGO_IL_USA Annual Cooling (WB=>MDB) .4%, MDB=31.2°C WB=25.5°C
+
+ SizingPeriod:DesignDay,
+ CHICAGO Ann Clg .4% Condns WB=>MDB, !- Name
+ 7, !- Month
+ 21, !- Day of Month
+ SummerDesignDay, !- Day Type
+ 31.2, !- Maximum Dry-Bulb Temperature {C}
+ 10.7, !- Daily Dry-Bulb Temperature Range {deltaC}
+ , !- Dry-Bulb Temperature Range Modifier Type
+ , !- Dry-Bulb Temperature Range Modifier Day Schedule Name
+ Wetbulb, !- Humidity Condition Type
+ 25.5, !- Wetbulb or DewPoint at Maximum Dry-Bulb {C}
+ , !- Humidity Condition Day Schedule Name
+ , !- Humidity Ratio at Maximum Dry-Bulb {kgWater/kgDryAir}
+ , !- Enthalpy at Maximum Dry-Bulb {J/kg}
+ , !- Daily Wet-Bulb Temperature Range {deltaC}
+ 99063., !- Barometric Pressure {Pa}
+ 5.3, !- Wind Speed {m/s}
+ 230, !- Wind Direction {deg}
+ No, !- Rain Indicator
+ No, !- Snow Indicator
+ No, !- Daylight Saving Time Indicator
+ ASHRAEClearSky, !- Solar Model Indicator
+ , !- Beam Solar Day Schedule Name
+ , !- Diffuse Solar Day Schedule Name
+ , !- ASHRAE Clear Sky Optical Depth for Beam Irradiance (taub) {dimensionless}
+ , !- ASHRAE Clear Sky Optical Depth for Diffuse Irradiance (taud) {dimensionless}
+ 1.00; !- Sky Clearness
+
+ Site:WaterMainsTemperature,
+ CORRELATION, !- Calculation Method
+ , !- Temperature Schedule Name
+ 9.69, !- Annual Average Outdoor Air Temperature {C}
+ 28.10; !- Maximum Difference In Monthly Average Outdoor Air Temperatures {deltaC}
+
+ Site:GroundTemperature:BuildingSurface,19.527,19.502,19.536,19.598,20.002,21.640,22.225,22.375,21.449,20.121,19.802,19.633;
+
+! ***OPAQUE CONSTRUCTIONS AND MATERIALS***
+! Exterior Walls
+
+ Construction,
+ Steel Frame Non-res Ext Wall, !- Name
+ Wood Siding, !- Outside Layer
+ Steel Frame NonRes Wall Insulation, !- Layer 2
+ 1/2IN Gypsum; !- Layer 3
+
+ Material,
+ Steel Frame NonRes Wall Insulation, !- Name
+ MediumRough, !- Roughness
+ 0.0870564552646045, !- Thickness {m}
+ 0.049, !- Conductivity {W/m-K}
+ 265.0000, !- Density {kg/m3}
+ 836.8000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.7000, !- Solar Absorptance
+ 0.7000; !- Visible Absorptance
+
+! Slab on grade, unheated
+
+ Construction,
+ ext-slab, !- Name
+ HW CONCRETE, !- Outside Layer
+ CP02 CARPET PAD; !- Layer 2
+
+! Interior Floors
+
+ Construction,
+ INT-FLOOR-TOPSIDE, !- Name
+ MAT-CC05 4 HW CONCRETE, !- Outside Layer
+ CP02 CARPET PAD; !- Layer 2
+
+ Construction,
+ INT-FLOOR-UNDERSIDE, !- Name
+ CP02 CARPET PAD, !- Outside Layer
+ MAT-CC05 4 HW CONCRETE; !- Layer 2
+
+! ***WINDOW/DOOR CONSTRUCTIONS AND MATERIALS***
+
+ Construction,
+ Window Non-res Fixed, !- Name
+ NonRes Fixed Assembly Window; !- Outside Layer
+
+ WindowMaterial:SimpleGlazingSystem,
+ NonRes Fixed Assembly Window, !- Name
+ 3.23646, !- U-Factor {W/m2-K}
+ 0.39, !- Solar Heat Gain Coefficient
+ ; !- Visible Transmittance
+
+! ***COMMON CONSTRUCTIONS AND MATERIALS***
+
+ Construction,
+ DropCeiling, !- Name
+ Std AC02; !- Outside Layer
+
+ Construction,
+ InteriorFurnishings, !- Name
+ Std Wood 6inch; !- Outside Layer
+
+ Material,
+ Std Wood 6inch, !- Name
+ MediumSmooth, !- Roughness
+ 0.15, !- Thickness {m}
+ 0.12, !- Conductivity {W/m-K}
+ 540.0000, !- Density {kg/m3}
+ 1210, !- Specific Heat {J/kg-K}
+ 0.9000000, !- Thermal Absorptance
+ 0.7000000, !- Solar Absorptance
+ 0.7000000; !- Visible Absorptance
+
+ Material,
+ Wood Siding, !- Name
+ MediumSmooth, !- Roughness
+ 0.0100, !- Thickness {m}
+ 0.1100, !- Conductivity {W/m-K}
+ 544.6200, !- Density {kg/m3}
+ 1210.0000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.7800, !- Solar Absorptance
+ 0.7800; !- Visible Absorptance
+
+ Material,
+ 1/2IN Gypsum, !- Name
+ Smooth, !- Roughness
+ 0.0127, !- Thickness {m}
+ 0.1600, !- Conductivity {W/m-K}
+ 784.9000, !- Density {kg/m3}
+ 830.0000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.9200, !- Solar Absorptance
+ 0.9200; !- Visible Absorptance
+
+ Material,
+ 1IN Stucco, !- Name
+ Smooth, !- Roughness
+ 0.0253, !- Thickness {m}
+ 0.6918, !- Conductivity {W/m-K}
+ 1858.0000, !- Density {kg/m3}
+ 837.0000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.9200, !- Solar Absorptance
+ 0.9200; !- Visible Absorptance
+
+ Material,
+ 8IN CONCRETE HW, !- Name
+ Rough, !- Roughness
+ 0.2032, !- Thickness {m}
+ 1.3110, !- Conductivity {W/m-K}
+ 2240.0000, !- Density {kg/m3}
+ 836.8000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.7000, !- Solar Absorptance
+ 0.7000; !- Visible Absorptance
+
+ Material,
+ Metal Siding, !- Name
+ Smooth, !- Roughness
+ 0.0015, !- Thickness {m}
+ 44.9600, !- Conductivity {W/m-K}
+ 7688.8600, !- Density {kg/m3}
+ 410.0000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.2000, !- Solar Absorptance
+ 0.2000; !- Visible Absorptance
+
+ Material,
+ HW CONCRETE, !- Name
+ Rough, !- Roughness
+ 0.1016, !- Thickness {m}
+ 1.3110, !- Conductivity {W/m-K}
+ 2240.0000, !- Density {kg/m3}
+ 836.8000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.7000, !- Solar Absorptance
+ 0.7000; !- Visible Absorptance
+
+ Material:NoMass,
+ CP02 CARPET PAD, !- Name
+ VeryRough, !- Roughness
+ 0.2165, !- Thermal Resistance {m2-K/W}
+ 0.9000, !- Thermal Absorptance
+ 0.7000, !- Solar Absorptance
+ 0.8000; !- Visible Absorptance
+
+ Material,
+ MAT-CC05 4 HW CONCRETE, !- Name
+ Rough, !- Roughness
+ 0.1016, !- Thickness {m}
+ 1.3110, !- Conductivity {W/m-K}
+ 2240.0000, !- Density {kg/m3}
+ 836.8000, !- Specific Heat {J/kg-K}
+ 0.9000, !- Thermal Absorptance
+ 0.7000, !- Solar Absorptance
+ 0.7000; !- Visible Absorptance
+
+! Acoustic tile for drop ceiling
+
+ Material,
+ Std AC02, !- Name
+ MediumSmooth, !- Roughness
+ 1.2700000E-02, !- Thickness {m}
+ 5.7000000E-02, !- Conductivity {W/m-K}
+ 288.0000, !- Density {kg/m3}
+ 1339.000, !- Specific Heat {J/kg-K}
+ 0.9000000, !- Thermal Absorptance
+ 0.7000000, !- Solar Absorptance
+ 0.2000000; !- Visible Absorptance
+
+ Material:NoMass,
+ MAT-AIR-WALL, !- Name
+ Rough, !- Roughness
+ 0.2079491, !- Thermal Resistance {m2-K/W}
+ 0.9, !- Thermal Absorptance
+ 0.7; !- Solar Absorptance
+
+! ZONE LIST:
+! FirstFloor_Plenum
+! Perimeter_bot_ZN_1
+! ***ZONES***
+
+ Zone,
+ FirstFloor_Plenum, !- Name
+ 0.0000, !- Direction of Relative North {deg}
+ 0.0000, !- X Origin {m}
+ 0.0000, !- Y Origin {m}
+ 0.0000, !- Z Origin {m}
+ 1, !- Type
+ 1, !- Multiplier
+ , !- Ceiling Height {m}
+ , !- Volume {m3}
+ autocalculate, !- Floor Area {m2}
+ , !- Zone Inside Convection Algorithm
+ , !- Zone Outside Convection Algorithm
+ No; !- Part of Total Floor Area
+
+ Zone,
+ Perimeter_bot_ZN_1, !- Name
+ 0.0000, !- Direction of Relative North {deg}
+ 0.0000, !- X Origin {m}
+ 0.0000, !- Y Origin {m}
+ 0.0000, !- Z Origin {m}
+ 1, !- Type
+ 1, !- Multiplier
+ , !- Ceiling Height {m}
+ , !- Volume {m3}
+ autocalculate, !- Floor Area {m2}
+ , !- Zone Inside Convection Algorithm
+ , !- Zone Outside Convection Algorithm
+ Yes; !- Part of Total Floor Area
+
+! ***WALLS***
+
+ BuildingSurface:Detailed,
+ FirstFloor_Plenum_Ceiling_1, !- Name
+ Ceiling, !- Surface Type
+ INT-FLOOR-UNDERSIDE, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0.0000,0.0000,3.9624, !- X,Y,Z ==> Vertex 1 {m}
+ 12,0.0000,3.9624, !- X,Y,Z ==> Vertex 2 {m}
+ 12,14,3.9624, !- X,Y,Z ==> Vertex 3 {m}
+ 0,14,3.9624; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ FirstFloor_Plenum_Floor_1, !- Name
+ Floor, !- Surface Type
+ DropCeiling, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Surface, !- Outside Boundary Condition
+ Perimeter_bot_ZN_1_Ceiling, !- Outside Boundary Condition Object
+ NoSun, !- Sun Exposure
+ NoWind, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,14,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 12,0.0000,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 0.0000,0.0000,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 0,14,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_Plenum_Wall_East, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,0.0000,3.9624, !- X,Y,Z ==> Vertex 1 {m}
+ 12,0.0000,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 12,14,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 12,14,3.9624; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_Plenum_Wall_North, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ NoSun, !- Sun Exposure
+ NoWind, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,14,3.9624, !- X,Y,Z ==> Vertex 1 {m}
+ 12,14,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 0.0000,14,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 0.0000,14,3.9624; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_Plenum_Wall_South, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0.0000,0.0000,3.9624, !- X,Y,Z ==> Vertex 1 {m}
+ 0.0000,0.0000,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 12,0.0000,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 12,0.0000,3.9624; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_Plenum_Wall_West, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ FirstFloor_Plenum, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0.0000,14,3.9624, !- X,Y,Z ==> Vertex 1 {m}
+ 0.0000,14,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 0.0000,0.0000,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 0.0000,0.0000,3.9624; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Ceiling, !- Name
+ Ceiling, !- Surface Type
+ DropCeiling, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Surface, !- Outside Boundary Condition
+ FirstFloor_Plenum_Floor_1, !- Outside Boundary Condition Object
+ NoSun, !- Sun Exposure
+ NoWind, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,0.0000,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 12,14,2.75, !- X,Y,Z ==> Vertex 2 {m}
+ 0,14,2.75, !- X,Y,Z ==> Vertex 3 {m}
+ 0.0000,0.0000,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Floor,!- Name
+ Floor, !- Surface Type
+ ext-slab, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Ground, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ NoSun, !- Sun Exposure
+ NoWind, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0.0000,0.0000,0.0000, !- X,Y,Z ==> Vertex 1 {m}
+ 0,14,0.0000, !- X,Y,Z ==> Vertex 2 {m}
+ 12,14,0.0000, !- X,Y,Z ==> Vertex 3 {m}
+ 12,0.0000,0.0000; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Wall_East, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,0.0000,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 12,0.0000,0.0000, !- X,Y,Z ==> Vertex 2 {m}
+ 12,14,0.0000, !- X,Y,Z ==> Vertex 3 {m}
+ 12,14,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Wall_North, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 12,14,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 12,14,0.0000, !- X,Y,Z ==> Vertex 2 {m}
+ 0,14,0.0000, !- X,Y,Z ==> Vertex 3 {m}
+ 0,14,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Wall_South, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0.0000,0.0000,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 0.0000,0.0000,0.0000, !- X,Y,Z ==> Vertex 2 {m}
+ 12,0.0000,0.0000, !- X,Y,Z ==> Vertex 3 {m}
+ 12,0.0000,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+ BuildingSurface:Detailed,
+ Perimeter_bot_ZN_1_Wall_West, !- Name
+ Wall, !- Surface Type
+ Steel Frame Non-res Ext Wall, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ , !- Space Name
+ Outdoors, !- Outside Boundary Condition
+ , !- Outside Boundary Condition Object
+ SunExposed, !- Sun Exposure
+ WindExposed, !- Wind Exposure
+ AutoCalculate, !- View Factor to Ground
+ 4, !- Number of Vertices
+ 0,14,2.75, !- X,Y,Z ==> Vertex 1 {m}
+ 0,14,0.0000, !- X,Y,Z ==> Vertex 2 {m}
+ 0.0000,0.0000,0.0000, !- X,Y,Z ==> Vertex 3 {m}
+ 0.0000,0.0000,2.75; !- X,Y,Z ==> Vertex 4 {m}
+
+! ***WINDOWS & DOORS***
+
+ FenestrationSurface:Detailed,
+ Perimeter_bot_ZN_1_Wall_South_Window, !- Name
+ Window, !- Surface Type
+ Window Non-res Fixed, !- Construction Name
+ Perimeter_bot_ZN_1_Wall_South, !- Building Surface Name
+ , !- Outside Boundary Condition Object
+ AutoCalculate, !- View Factor to Ground
+ , !- Frame and Divider Name
+ 1.0000, !- Multiplier
+ 4, !- Number of Vertices
+ 1.5,0.0000,2.3293, !- X,Y,Z ==> Vertex 1 {m}
+ 1.5,0.0000,1.0213, !- X,Y,Z ==> Vertex 2 {m}
+ 10.5,0.0000,1.0213, !- X,Y,Z ==> Vertex 3 {m}
+ 10.5,0.0000,2.3293; !- X,Y,Z ==> Vertex 4 {m}
+
+! ***GEOMETRY RULES***
+
+ GlobalGeometryRules,
+ UpperLeftCorner, !- Starting Vertex Position
+ Counterclockwise, !- Vertex Entry Direction
+ Relative, !- Coordinate System
+ Relative; !- Daylighting Reference Point Coordinate System
+
+! ***PEOPLE***
+
+ People,
+ Perimeter_bot_ZN_1 People, !- Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList or Space or SpaceList Name
+ BLDG_OCC_SCH, !- Number of People Schedule Name
+ Area/Person, !- Number of People Calculation Method
+ , !- Number of People
+ , !- People per Floor Area {person/m2}
+ 18.58, !- Floor Area per Person {m2/person}
+ 0.3000, !- Fraction Radiant
+ AUTOCALCULATE, !- Sensible Heat Fraction
+ ACTIVITY_SCH, !- Activity Level Schedule Name
+ , !- Carbon Dioxide Generation Rate {m3/s-W}
+ No, !- Enable ASHRAE 55 Comfort Warnings
+ ZoneAveraged, !- Mean Radiant Temperature Calculation Type
+ , !- Surface Name/Angle Factor List Name
+ WORK_EFF_SCH, !- Work Efficiency Schedule Name
+ ClothingInsulationSchedule, !- Clothing Insulation Calculation Method
+ , !- Clothing Insulation Calculation Method Schedule Name
+ CLOTHING_SCH, !- Clothing Insulation Schedule Name
+ AIR_VELO_SCH, !- Air Velocity Schedule Name
+ FANGER; !- Thermal Comfort Model 1 Type
+
+! ***LIGHTS***
+
+ Lights,
+ Perimeter_bot_ZN_1_Lights, !- Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList or Space or SpaceList Name
+ BLDG_LIGHT_SCH, !- Schedule Name
+ Watts/Area, !- Design Level Calculation Method
+ , !- Lighting Level {W}
+ 10.76, !- Watts per Zone Floor Area {W/m2}
+ , !- Watts per Person {W/person}
+ 0.4000, !- Return Air Fraction
+ 0.4000, !- Fraction Radiant
+ 0.2000, !- Fraction Visible
+ 1.0000, !- Fraction Replaceable
+ General, !- End-Use Subcategory
+ No; !- Return Air Fraction Calculated from Plenum Temperature
+
+! ***EQUIPMENT GAINS***
+
+ ElectricEquipment,
+ Perimeter_bot_ZN_1_PlugMisc_Equip, !- Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList or Space or SpaceList Name
+ BLDG_EQUIP_SCH, !- Schedule Name
+ Watts/Area, !- Design Level Calculation Method
+ , !- Design Level {W}
+ 10.76, !- Watts per Zone Floor Area {W/m2}
+ , !- Watts per Person {W/person}
+ 0.0000, !- Fraction Latent
+ 0.5000, !- Fraction Radiant
+ 0.0000, !- Fraction Lost
+ General; !- End-Use Subcategory
+
+! ***EXTERIOR LOADS***
+
+ Exterior:Lights,
+ Exterior Facade Lighting,!- Name
+ ALWAYS_ON, !- Schedule Name
+ 14804, !- Design Level {W}
+ AstronomicalClock, !- Control Option
+ Exterior Facade Lighting;!- End-Use Subcategory
+
+! ***INFILTRATION***
+
+ ZoneInfiltration:DesignFlowRate,
+ FirstFloor_Plenum_Infiltration, !- Name
+ FirstFloor_Plenum, !- Zone or ZoneList or Space or SpaceList Name
+ INFIL_QUARTER_ON_SCH, !- Schedule Name
+ Flow/ExteriorArea, !- Design Flow Rate Calculation Method
+ , !- Design Flow Rate {m3/s}
+ , !- Flow Rate per Floor Area {m3/s-m2}
+ 0.000302, !- Flow Rate per Exterior Surface Area {m3/s-m2}
+ , !- Air Changes per Hour {1/hr}
+ 1.0000, !- Constant Term Coefficient
+ 0.0000, !- Temperature Term Coefficient
+ 0.0000, !- Velocity Term Coefficient
+ 0.0000; !- Velocity Squared Term Coefficient
+
+ ZoneInfiltration:DesignFlowRate,
+ Perimeter_bot_ZN_1_Infiltration, !- Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList or Space or SpaceList Name
+ INFIL_QUARTER_ON_SCH, !- Schedule Name
+ Flow/ExteriorArea, !- Design Flow Rate Calculation Method
+ , !- Design Flow Rate {m3/s}
+ , !- Flow Rate per Floor Area {m3/s-m2}
+ 0.000302, !- Flow Rate per Exterior Surface Area {m3/s-m2}
+ , !- Air Changes per Hour {1/hr}
+ 1.0000, !- Constant Term Coefficient
+ 0.0000, !- Temperature Term Coefficient
+ 0.0000, !- Velocity Term Coefficient
+ 0.0000; !- Velocity Squared Term Coefficient
+
+! ***INTERNAL MASS***
+
+ InternalMass,
+ Perimeter_bot_ZN_1 Internal Mass, !- Name
+ InteriorFurnishings, !- Construction Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList Name
+ , !- Space or SpaceList Name
+ 414.6763; !- Surface Area {m2}
+
+! ***INTERNAL GAINS SCHEDULES***
+
+ Schedule:Compact,
+ ACTIVITY_SCH, !- Name
+ Any Number, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,120.; !- Field 3
+
+ Schedule:Compact,
+ AIR_VELO_SCH, !- Name
+ Any Number, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,0.2; !- Field 3
+
+ Schedule:Compact,
+ BLDG_OCC_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: SummerDesignDay, !- Field 2
+ Until: 06:00,0.0, !- Field 3
+ Until: 22:00,1.0, !- Field 5
+ Until: 24:00,0.05, !- Field 7
+ For: Weekdays, !- Field 9
+ Until: 06:00,0.0, !- Field 10
+ Until: 07:00,0.1, !- Field 12
+ Until: 08:00,0.2, !- Field 14
+ Until: 12:00,0.95, !- Field 16
+ Until: 13:00,0.5, !- Field 18
+ Until: 17:00,0.95, !- Field 20
+ Until: 18:00,0.7, !- Field 22
+ Until: 20:00,0.4, !- Field 24
+ Until: 22:00,0.1, !- Field 26
+ Until: 24:00,0.05, !- Field 28
+ For: Saturday, !- Field 30
+ Until: 06:00,0.0, !- Field 31
+ Until: 08:00,0.1, !- Field 33
+ Until: 14:00,0.5, !- Field 35
+ Until: 17:00,0.1, !- Field 37
+ Until: 24:00,0.0, !- Field 39
+ For: AllOtherDays, !- Field 41
+ Until: 24:00,0.0; !- Field 42
+
+ Schedule:Compact,
+ BLDG_LIGHT_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays, !- Field 2
+ Until: 05:00,0.05, !- Field 3
+ Until: 07:00,0.1, !- Field 5
+ Until: 08:00,0.3, !- Field 7
+ Until: 17:00,0.9, !- Field 9
+ Until: 18:00,0.7, !- Field 11
+ Until: 20:00,0.5, !- Field 13
+ Until: 22:00,0.3, !- Field 15
+ Until: 23:00,0.1, !- Field 17
+ Until: 24:00,0.05, !- Field 19
+ For: Saturday, !- Field 21
+ Until: 06:00,0.05, !- Field 22
+ Until: 08:00,0.1, !- Field 24
+ Until: 14:00,0.5, !- Field 26
+ Until: 17:00,0.15, !- Field 28
+ Until: 24:00,0.05, !- Field 30
+ For: SummerDesignDay, !- Field 32
+ Until: 24:00,1.0, !- Field 33
+ For: WinterDesignDay, !- Field 35
+ Until: 24:00,0.0, !- Field 36
+ For: AllOtherDays, !- Field 38
+ Until: 24:00,0.05; !- Field 39
+
+ Schedule:Compact,
+ BLDG_EQUIP_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays, !- Field 2
+ Until: 08:00,0.40, !- Field 3
+ Until: 12:00,0.90, !- Field 5
+ Until: 13:00,0.80, !- Field 7
+ Until: 17:00,0.90, !- Field 9
+ Until: 18:00,0.80, !- Field 11
+ Until: 20:00,0.60, !- Field 13
+ Until: 22:00,0.50, !- Field 15
+ Until: 24:00,0.40, !- Field 17
+ For: Saturday, !- Field 19
+ Until: 06:00,0.30, !- Field 20
+ Until: 08:00,0.4, !- Field 22
+ Until: 14:00,0.5, !- Field 24
+ Until: 17:00,0.35, !- Field 26
+ Until: 24:00,0.30, !- Field 28
+ For: SummerDesignDay, !- Field 30
+ Until: 24:00,1.0, !- Field 31
+ For: WinterDesignDay, !- Field 33
+ Until: 24:00,0.0, !- Field 34
+ For: AllOtherDays, !- Field 36
+ Until: 24:00,0.30; !- Field 37
+
+ Schedule:Compact,
+ CLOTHING_SCH, !- Name
+ Any Number, !- Schedule Type Limits Name
+ Through: 04/30, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,1.0, !- Field 3
+ Through: 09/30, !- Field 5
+ For: AllDays, !- Field 6
+ Until: 24:00,0.5, !- Field 7
+ Through: 12/31, !- Field 9
+ For: AllDays, !- Field 10
+ Until: 24:00,1.0; !- Field 11
+
+ Schedule:Compact,
+ INFIL_QUARTER_ON_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays SummerDesignDay, !- Field 2
+ Until: 06:00,1.0, !- Field 3
+ Until: 22:00,0.25, !- Field 5
+ Until: 24:00,1.0, !- Field 7
+ For: Saturday WinterDesignDay, !- Field 9
+ Until: 06:00,1.0, !- Field 10
+ Until: 18:00,0.25, !- Field 12
+ Until: 24:00,1.0, !- Field 14
+ For: Sunday Holidays AllOtherDays, !- Field 16
+ Until: 24:00,1.0; !- Field 17
+
+ Schedule:Compact,
+ WORK_EFF_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,0.0; !- Field 3
+
+! ***HVAC EQUIPMENT***
+
+ Fan:SystemModel,
+ VAV_1_Fan, !- Name
+ HVACOperationSchd, !- Availability Schedule Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Air Inlet Node Name
+ VAV_1 Supply Equipment Outlet Node, !- Air Outlet Node Name
+ Autosize, !- Design Maximum Air Flow Rate {m3/s}
+ Continuous, !- Speed Control Method
+ 0.0, !- Electric Power Minimum Flow Rate Fraction
+ 1109.648, !- Design Pressure Rise {Pa}
+ 0.91, !- Motor Efficiency
+ 1.0, !- Motor In Air Stream Fraction
+ AUTOSIZE, !- Design Electric Power Consumption {W}
+ TotalEfficiencyAndPressure, !- Design Power Sizing Method
+ , !- Electric Power Per Unit Flow Rate {W/(m3/s)}
+ , !- Electric Power Per Unit Flow Rate Per Unit Pressure {W/((m3/s)-Pa)}
+ 0.5915, !- Fan Total Efficiency
+ VAV Fan Curve, !- Electric Power Function of Flow Fraction Curve Name
+ , !- Night Ventilation Mode Pressure Rise {Pa}
+ , !- Night Ventilation Mode Flow Fraction
+ , !- Motor Loss Zone Name
+ , !- Motor Loss Radiative Fraction
+ Fan Energy; !- End-Use Subcategory
+
+ Curve:Quartic,
+ VAV Fan Curve, !- Name
+ 0.0407598940, !- Coefficient1 Constant
+ 0.08804497, !- Coefficient2 x
+ -0.072926120, !- Coefficient3 x**2
+ 0.9437398230, !- Coefficient4 x**3
+ 0.0, !- Coefficient5 x**4
+ 0.0, !- Minimum Value of x
+ 1.0, !- Maximum Value of x
+ 0.0, !- Minimum Curve Output
+ 1.0, !- Maximum Curve Output
+ Dimensionless, !- Input Unit Type for X
+ Dimensionless; !- Output Unit Type
+
+ Output:Variable,VAV Fan Curve,Performance Curve Input Variable 1 Value,detailed;
+
+ Output:Variable,VAV Fan Curve,Performance Curve Output Value,detailed;
+
+ Coil:Heating:Fuel,
+ VAV_1_HeatC, !- Name
+ ALWAYS_ON, !- Availability Schedule Name
+ NaturalGas, !- Fuel Type
+ 0.8, !- Burner Efficiency
+ AUTOSIZE, !- Nominal Capacity {W}
+ VAV_1_CoolC-VAV_1_HeatCNode, !- Air Inlet Node Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Air Outlet Node Name
+ VAV_1_HeatC-VAV_1_FanNode; !- Temperature Setpoint Node Name
+
+ Coil:Cooling:DX:TwoSpeed,
+ VAV_1_CoolC DXCoil, !- Name
+ ALWAYS_ON, !- Availability Schedule Name
+ AUTOSIZE, !- High Speed Gross Rated Total Cooling Capacity {W}
+ AUTOSIZE, !- High Speed Rated Sensible Heat Ratio
+ 3.23372055845678, !- High Speed Gross Rated Cooling COP {W/W}
+ AUTOSIZE, !- High Speed Rated Air Flow Rate {m3/s}
+ 450, !- Unit Internal Static Air Pressure {Pa}
+ VAV_1_OA-VAV_1_CoolCNode,!- Air Inlet Node Name
+ VAV_1_CoolC-VAV_1_HeatCNode, !- Air Outlet Node Name
+ Measured_CoolCStandard10Ton_CapFT, !- Total Cooling Capacity Function of Temperature Curve Name
+ Measured_CoolCStandard10Ton_CapFF, !- Total Cooling Capacity Function of Flow Fraction Curve Name
+ Measured_CoolCStandard10Ton_EIRFT, !- Energy Input Ratio Function of Temperature Curve Name
+ Measured_CoolCStandard10Ton_EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
+ No_PLR_Degredation, !- Part Load Fraction Correlation Curve Name
+ AUTOSIZE, !- Low Speed Gross Rated Total Cooling Capacity {W}
+ AUTOSIZE, !- Low Speed Gross Rated Sensible Heat Ratio
+ 3.28186528141147, !- Low Speed Gross Rated Cooling COP {W/W}
+ AUTOSIZE, !- Low Speed Rated Air Flow Rate {m3/s}
+ Measured_LowSpeedCoolCapLSFT, !- Low Speed Total Cooling Capacity Function of Temperature Curve Name
+ Measured_LowSpeedCoolEIRLSFT; !- Low Speed Energy Input Ratio Function of Temperature Curve Name
+
+ Coil:Heating:Electric,
+ Perimeter_bot_ZN_1 VAV Box Reheat Coil, !- Name
+ ALWAYS_ON, !- Availability Schedule Name
+ 1, !- Efficiency
+ AUTOSIZE, !- Nominal Capacity {W}
+ Perimeter_bot_ZN_1 VAV Box Damper Node, !- Air Inlet Node Name
+ Perimeter_bot_ZN_1 VAV Box Outlet Node Name, !- Air Outlet Node Name
+ ; !- Temperature Setpoint Node Name
+
+ AirTerminal:SingleDuct:VAV:Reheat,
+ Perimeter_bot_ZN_1 VAV Box Component, !- Name
+ ALWAYS_ON, !- Availability Schedule Name
+ Perimeter_bot_ZN_1 VAV Box Damper Node, !- Damper Air Outlet Node Name
+ Perimeter_bot_ZN_1 VAV Box Inlet Node Name, !- Air Inlet Node Name
+ AUTOSIZE, !- Maximum Air Flow Rate {m3/s}
+ Constant, !- Zone Minimum Air Flow Input Method
+ 0.3, !- Constant Minimum Air Flow Fraction
+ , !- Fixed Minimum Air Flow Rate {m3/s}
+ , !- Minimum Air Flow Fraction Schedule Name
+ Coil:Heating:Electric, !- Reheat Coil Object Type
+ Perimeter_bot_ZN_1 VAV Box Reheat Coil, !- Reheat Coil Name
+ AUTOSIZE, !- Maximum Hot Water or Steam Flow Rate {m3/s}
+ 0.0, !- Minimum Hot Water or Steam Flow Rate {m3/s}
+ Perimeter_bot_ZN_1 VAV Box Outlet Node Name, !- Air Outlet Node Name
+ 0.001, !- Convergence Tolerance
+ NORMAL, !- Damper Heating Action
+ AUTOCALCULATE, !- Maximum Flow per Zone Floor Area During Reheat {m3/s-m2}
+ AUTOCALCULATE; !- Maximum Flow Fraction During Reheat
+
+ ZoneHVAC:EquipmentList,
+ Perimeter_bot_ZN_1 Equipment, !- Name
+ SequentialLoad, !- Load Distribution Scheme
+ ZoneHVAC:AirDistributionUnit, !- Zone Equipment 1 Object Type
+ Perimeter_bot_ZN_1 VAV Box, !- Zone Equipment 1 Name
+ 1, !- Zone Equipment 1 Cooling Sequence
+ 1, !- Zone Equipment 1 Heating or No-Load Sequence
+ , !- Zone Equipment 1 Sequential Cooling Fraction Schedule Name
+ ; !- Zone Equipment 1 Sequential Heating Fraction Schedule Name
+
+! ***SIZING & CONTROLS***
+
+ Sizing:Zone,
+ Perimeter_bot_ZN_1, !- Zone or ZoneList Name
+ SupplyAirTemperature, !- Zone Cooling Design Supply Air Temperature Input Method
+ 12.8000, !- Zone Cooling Design Supply Air Temperature {C}
+ , !- Zone Cooling Design Supply Air Temperature Difference {deltaC}
+ SupplyAirTemperature, !- Zone Heating Design Supply Air Temperature Input Method
+ 50.0000, !- Zone Heating Design Supply Air Temperature {C}
+ , !- Zone Heating Design Supply Air Temperature Difference {deltaC}
+ 0.0085, !- Zone Cooling Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ 0.0080, !- Zone Heating Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ SZ DSOA Perimeter_bot_ZN_1, !- Design Specification Outdoor Air Object Name
+ , !- Zone Heating Sizing Factor
+ , !- Zone Cooling Sizing Factor
+ DesignDay, !- Cooling Design Air Flow Method
+ , !- Cooling Design Air Flow Rate {m3/s}
+ , !- Cooling Minimum Air Flow per Zone Floor Area {m3/s-m2}
+ , !- Cooling Minimum Air Flow {m3/s}
+ , !- Cooling Minimum Air Flow Fraction
+ DesignDay, !- Heating Design Air Flow Method
+ , !- Heating Design Air Flow Rate {m3/s}
+ , !- Heating Maximum Air Flow per Zone Floor Area {m3/s-m2}
+ , !- Heating Maximum Air Flow {m3/s}
+ , !- Heating Maximum Air Flow Fraction
+ , !- Design Specification Zone Air Distribution Object Name
+ No, !- Account for Dedicated Outdoor Air System
+ NeutralSupplyAir, !- Dedicated Outdoor Air System Control Strategy
+ autosize, !- Dedicated Outdoor Air Low Setpoint Temperature for Design {C}
+ autosize, !- Dedicated Outdoor Air High Setpoint Temperature for Design {C}
+ Sensible Load Only No Latent Load, !- Zone Load Sizing Method
+ HumidityRatioDifference, !- Zone Latent Cooling Design Supply Air Humidity Ratio Input Method
+ , !- Zone Dehumidification Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ 0.005, !- Zone Cooling Design Supply Air Humidity Ratio Difference {kgWater/kgDryAir}
+ HumidityRatioDifference, !- Zone Latent Heating Design Supply Air Humidity Ratio Input Method
+ , !- Zone Humidification Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ 0.005; !- Zone Humidification Design Supply Air Humidity Ratio Difference {kgWater/kgDryAir}
+
+ DesignSpecification:OutdoorAir,
+ SZ DSOA Perimeter_bot_ZN_1, !- Name
+ Flow/Person, !- Outdoor Air Method
+ 0.0125, !- Outdoor Air Flow per Person {m3/s-person}
+ , !- Outdoor Air Flow per Zone Floor Area {m3/s-m2}
+ ; !- Outdoor Air Flow per Zone {m3/s}
+
+ SetpointManager:Scheduled,
+ VAV_1 SAT setpoint, !- Name
+ Temperature, !- Control Variable
+ Seasonal-Reset-Supply-Air-Temp-Sch, !- Schedule Name
+ VAV_1 Supply Equipment Outlet Node; !- Setpoint Node or NodeList Name
+
+ ZoneControl:Thermostat,
+ Perimeter_bot_ZN_1 Thermostat, !- Name
+ Perimeter_bot_ZN_1, !- Zone or ZoneList Name
+ Dual Zone Control Type Sched, !- Control Type Schedule Name
+ ThermostatSetpoint:DualSetpoint, !- Control 1 Object Type
+ Perimeter_bot_ZN_1 DualSPSched; !- Control 1 Name
+
+ ThermostatSetpoint:DualSetpoint,
+ Perimeter_bot_ZN_1 DualSPSched, !- Name
+ HTGSETP_SCH, !- Heating Setpoint Temperature Schedule Name
+ CLGSETP_SCH; !- Cooling Setpoint Temperature Schedule Name
+
+ Sizing:System,
+ VAV_1, !- AirLoop Name
+ Sensible, !- Type of Load to Size On
+ AUTOSIZE, !- Design Outdoor Air Flow Rate {m3/s}
+ 0.3, !- Central Heating Maximum System Air Flow Ratio
+ 7.0, !- Preheat Design Temperature {C}
+ 0.008, !- Preheat Design Humidity Ratio {kgWater/kgDryAir}
+ 12.8000, !- Precool Design Temperature {C}
+ 0.008, !- Precool Design Humidity Ratio {kgWater/kgDryAir}
+ 12.8000, !- Central Cooling Design Supply Air Temperature {C}
+ 16.7000, !- Central Heating Design Supply Air Temperature {C}
+ NonCoincident, !- Type of Zone Sum to Use
+ No, !- 100% Outdoor Air in Cooling
+ No, !- 100% Outdoor Air in Heating
+ 0.0085, !- Central Cooling Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ 0.0080, !- Central Heating Design Supply Air Humidity Ratio {kgWater/kgDryAir}
+ DesignDay, !- Cooling Supply Air Flow Rate Method
+ 0.0, !- Cooling Supply Air Flow Rate {m3/s}
+ , !- Cooling Supply Air Flow Rate Per Floor Area {m3/s-m2}
+ , !- Cooling Fraction of Autosized Cooling Supply Air Flow Rate
+ , !- Cooling Supply Air Flow Rate Per Unit Cooling Capacity {m3/s-W}
+ DesignDay, !- Heating Supply Air Flow Rate Method
+ 0.0, !- Heating Supply Air Flow Rate {m3/s}
+ , !- Heating Supply Air Flow Rate Per Floor Area {m3/s-m2}
+ , !- Heating Fraction of Autosized Heating Supply Air Flow Rate
+ , !- Heating Fraction of Autosized Cooling Supply Air Flow Rate
+ , !- Heating Supply Air Flow Rate Per Unit Heating Capacity {m3/s-W}
+ , !- System Outdoor Air Method
+ 1.0, !- Zone Maximum Outdoor Air Fraction {dimensionless}
+ CoolingDesignCapacity, !- Cooling Design Capacity Method
+ autosize, !- Cooling Design Capacity {W}
+ , !- Cooling Design Capacity Per Floor Area {W/m2}
+ , !- Fraction of Autosized Cooling Design Capacity
+ HeatingDesignCapacity, !- Heating Design Capacity Method
+ autosize, !- Heating Design Capacity {W}
+ , !- Heating Design Capacity Per Floor Area {W/m2}
+ , !- Fraction of Autosized Heating Design Capacity
+ VAV; !- Central Cooling Capacity Control Method
+
+ Controller:OutdoorAir,
+ VAV_1_OA_Controller, !- Name
+ VAV_1_OARelief Node, !- Relief Air Outlet Node Name
+ VAV_1 Supply Equipment Inlet Node, !- Return Air Node Name
+ VAV_1_OA-VAV_1_CoolCNode,!- Mixed Air Node Name
+ VAV_1_OAInlet Node, !- Actuator Node Name
+ AUTOSIZE, !- Minimum Outdoor Air Flow Rate {m3/s}
+ AUTOSIZE, !- Maximum Outdoor Air Flow Rate {m3/s}
+ DifferentialDryBulb, !- Economizer Control Type
+ ModulateFlow, !- Economizer Control Action Type
+ 28.0, !- Economizer Maximum Limit Dry-Bulb Temperature {C}
+ 64000.0, !- Economizer Maximum Limit Enthalpy {J/kg}
+ , !- Economizer Maximum Limit Dewpoint Temperature {C}
+ , !- Electronic Enthalpy Limit Curve Name
+ -100.0, !- Economizer Minimum Limit Dry-Bulb Temperature {C}
+ NoLockout, !- Lockout Type
+ FixedMinimum, !- Minimum Limit Type
+ MinOA_MotorizedDamper_Sched, !- Minimum Outdoor Air Schedule Name
+ , !- Minimum Fraction of Outdoor Air Schedule Name
+ , !- Maximum Fraction of Outdoor Air Schedule Name
+ ; !- Mechanical Ventilation Controller Name
+
+!- Stage 1 : Lennox LGE Measured Total Cooling Capacity Function of Temperature Curve
+!- bi-quadratic curve = a + b*wb + c*wb**2 + d*edb + e*edb**2 + f*wb*edb
+!- wb = entering wet-bulb temperature (C)
+!- edb = dry-bulb temperature seen by the condenser (C)
+
+ Curve:Biquadratic,
+ Measured_LowSpeedCoolCapLSFT, !- Name
+ 0.4136, !- Coefficient1 Constant
+ 0.03105, !- Coefficient2 x
+ 0, !- Coefficient3 x**2
+ 0.006952, !- Coefficient4 y
+ -0.00021280, !- Coefficient5 y**2
+ 0, !- Coefficient6 x*y
+ 11.1, !- Minimum Value of x
+ 29.4, !- Maximum Value of x
+ 10.0, !- Minimum Value of y
+ 50.3; !- Maximum Value of y
+
+!- Stage 2 : Lennox LGE Measured Total Cooling Capacity Function of Temperature Curve
+!- bi-quadratic curve = a + b*wb + c*wb**2 + d*edb + e*edb**2 + f*wb*edb
+!- wb = entering wet-bulb temperature (C)
+!- edb = dry-bulb temperature seen by the condenser (C)
+
+ Curve:Biquadratic,
+ Measured_CoolCStandard10Ton_CapFT, !- Name
+ 0.52357, !- Coefficient1 Constant
+ 0.03478, !- Coefficient2 x
+ 0, !- Coefficient3 x**2
+ -0.001915, !- Coefficient4 y
+ -0.00010838, !- Coefficient5 y**2
+ 0, !- Coefficient6 x*y
+ 11.1, !- Minimum Value of x
+ 29.4, !- Maximum Value of x
+ 10.0, !- Minimum Value of y
+ 50.3; !- Maximum Value of y
+
+!- Stage 2 : Lennox LGE Measured Total Cooling Capacity Function of Flow Fraction Curve
+!- quadratic curve = a + b*ff + c*ff**2
+!- ff = fraction of the full load flow
+
+ Curve:Quadratic,
+ Measured_CoolCStandard10Ton_CapFF, !- Name
+ 0.7685, !- Coefficient1 Constant
+ 0.2315, !- Coefficient2 x
+ 0, !- Coefficient3 x**2
+ 0.776, !- Minimum Value of x
+ 1.197; !- Maximum Value of x
+
+!- Stage 1 : Lennox LGE Measured Energy Input Ratio Function of Temperature Curve
+!- bi-quadratic curve = a + b*wb + c*wb**2 + d*edb + e*edb**2 + f*wb*edb
+!- wb = entering wet-bulb temperature (C)
+!- edb = dry-bulb temperature seen by the condenser (C)
+
+ Curve:Biquadratic,
+ Measured_LowSpeedCoolEIRLSFT, !- Name
+ 1.1389, !- Coefficient1 Constant
+ -0.04518, !- Coefficient2 x
+ 0.0014298, !- Coefficient3 x**2
+ 0.006044, !- Coefficient4 y
+ 0.0006745, !- Coefficient5 y**2
+ -0.0012325, !- Coefficient6 x*y
+ 11.1, !- Minimum Value of x
+ 29.4, !- Maximum Value of x
+ 10.0, !- Minimum Value of y
+ 50.3; !- Maximum Value of y
+
+!- Stage 2 : Lennox LGE Measured Energy Input Ratio Function of Temperature Curve
+!- bi-quadratic curve = a + b*wb + c*wb**2 + d*edb + e*edb**2 + f*wb*edb
+!- wb = entering wet-bulb temperature (C)
+!- edb = dry-bulb temperature seen by the condenser (C)
+
+ Curve:Biquadratic,
+ Measured_CoolCStandard10Ton_EIRFT, !- Name
+ 0.9847, !- Coefficient1 Constant
+ -0.04285, !- Coefficient2 x
+ 0.0013562, !- Coefficient3 x**2
+ 0.009934, !- Coefficient4 y
+ 0.0006398, !- Coefficient5 y**2
+ -0.0011690, !- Coefficient6 x*y
+ 11.1, !- Minimum Value of x
+ 29.4, !- Maximum Value of x
+ 10.0, !- Minimum Value of y
+ 50.3; !- Maximum Value of y
+
+!- Stage 2 : Lennox LGE Measured Energy Input Ratio Function of Flow Fraction Curve
+!- quadratic curve = a + b*ff + c*ff**2
+!- ff = fraction of the full load flow
+
+ Curve:Quadratic,
+ Measured_CoolCStandard10Ton_EIRFFF, !- Name
+ 1.192, !- Coefficient1 Constant
+ -0.1917, !- Coefficient2 x
+ 0, !- Coefficient3 x**2
+ 0.776, !- Minimum Value of x
+ 1.197; !- Maximum Value of x
+
+!- Part Load Fraction Correlation Curve [Assuming no compressor cycling degredation at part loads]
+!- quadratic curve = a + b*PLR + c*PLR**2
+!- PLR = part load ratio (sensible cooling load/steady-state sensible cooling capacity)
+
+ Curve:Quadratic,
+ No_PLR_Degredation, !- Name
+ 1.0, !- Coefficient1 Constant
+ 0, !- Coefficient2 x
+ 0, !- Coefficient3 x**2
+ 0.0, !- Minimum Value of x
+ 1.0; !- Maximum Value of x
+
+! ***AIR LOOPS***
+
+ AirLoopHVAC,
+ VAV_1, !- Name
+ , !- Controller List Name
+ VAV_1 Availability Manager List, !- Availability Manager List Name
+ AUTOSIZE, !- Design Supply Air Flow Rate {m3/s}
+ VAV_1 Air Loop Branches, !- Branch List Name
+ , !- Connector List Name
+ VAV_1 Supply Equipment Inlet Node, !- Supply Side Inlet Node Name
+ VAV_1 Zone Equipment Outlet Node, !- Demand Side Outlet Node Name
+ VAV_1 Zone Equipment Inlet Node, !- Demand Side Inlet Node Names
+ VAV_1 Supply Equipment Outlet Node; !- Supply Side Outlet Node Names
+
+ CoilSystem:Cooling:DX,
+ VAV_1_CoolC, !- Name
+ ALWAYS_ON, !- Availability Schedule Name
+ VAV_1_OA-VAV_1_CoolCNode,!- DX Cooling Coil System Inlet Node Name
+ VAV_1_CoolC-VAV_1_HeatCNode, !- DX Cooling Coil System Outlet Node Name
+ VAV_1_CoolC-VAV_1_HeatCNode, !- DX Cooling Coil System Sensor Node Name
+ Coil:Cooling:DX:TwoSpeed,!- Cooling Coil Object Type
+ VAV_1_CoolC DXCoil; !- Cooling Coil Name
+
+ AirLoopHVAC:ReturnPlenum,
+ VAV_1 Return Plenum, !- Name
+ FirstFloor_Plenum, !- Zone Name
+ FIRSTFLOOR_PLENUMPlenumNode, !- Zone Node Name
+ FIRSTFLOOR_PLENUMPlenumOutletNode, !- Outlet Node Name
+ , !- Induced Air Outlet Node or NodeList Name
+ Perimeter_bot_ZN_1 Return Air Node Name; !- Inlet 1 Node Name
+
+! ***CONNECTIONS***
+
+ ZoneHVAC:EquipmentConnections,
+ Perimeter_bot_ZN_1, !- Zone Name
+ Perimeter_bot_ZN_1 Equipment, !- Zone Conditioning Equipment List Name
+ Perimeter_bot_ZN_1 Inlet Nodes, !- Zone Air Inlet Node or NodeList Name
+ , !- Zone Air Exhaust Node or NodeList Name
+ Perimeter_bot_ZN_1 Air Node, !- Zone Air Node Name
+ Perimeter_bot_ZN_1 Return Air Node Name; !- Zone Return Air Node or NodeList Name
+
+ ZoneHVAC:AirDistributionUnit,
+ Perimeter_bot_ZN_1 VAV Box, !- Name
+ Perimeter_bot_ZN_1 VAV Box Outlet Node Name, !- Air Distribution Unit Outlet Node Name
+ AirTerminal:SingleDuct:VAV:Reheat, !- Air Terminal Object Type
+ Perimeter_bot_ZN_1 VAV Box Component; !- Air Terminal Name
+
+ NodeList,
+ Perimeter_bot_ZN_1 Inlet Nodes, !- Name
+ Perimeter_bot_ZN_1 VAV Box Outlet Node Name; !- Node 1 Name
+
+ NodeList,
+ VAV_1_OANode List, !- Name
+ VAV_1_OAInlet Node; !- Node 1 Name
+
+ AvailabilityManagerAssignmentList,
+ VAV_1 Availability Manager List, !- Name
+ AvailabilityManager:NightCycle, !- Availability Manager 1 Object Type
+ VAV_1 Availability Manager; !- Availability Manager 1 Name
+
+ AvailabilityManager:NightCycle,
+ VAV_1 Availability Manager, !- Name
+ ALWAYS_ON, !- Applicability Schedule Name
+ HVACOperationSchd, !- Fan Schedule Name
+ CycleOnAny, !- Control Type
+ 1.0, !- Thermostat Tolerance {deltaC}
+ FixedRunTime, !- Cycling Run Time Control Type
+ 1800; !- Cycling Run Time {s}
+
+ BranchList,
+ VAV_1 Air Loop Branches, !- Name
+ VAV_1 Air Loop Main Branch; !- Branch 1 Name
+
+ Branch,
+ VAV_1 Air Loop Main Branch, !- Name
+ , !- Pressure Drop Curve Name
+ AirLoopHVAC:OutdoorAirSystem, !- Component 1 Object Type
+ VAV_1_OA, !- Component 1 Name
+ VAV_1 Supply Equipment Inlet Node, !- Component 1 Inlet Node Name
+ VAV_1_OA-VAV_1_CoolCNode,!- Component 1 Outlet Node Name
+ CoilSystem:Cooling:DX, !- Component 2 Object Type
+ VAV_1_CoolC, !- Component 2 Name
+ VAV_1_OA-VAV_1_CoolCNode,!- Component 2 Inlet Node Name
+ VAV_1_CoolC-VAV_1_HeatCNode, !- Component 2 Outlet Node Name
+ Coil:Heating:Fuel, !- Component 3 Object Type
+ VAV_1_HeatC, !- Component 3 Name
+ VAV_1_CoolC-VAV_1_HeatCNode, !- Component 3 Inlet Node Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Component 3 Outlet Node Name
+ Fan:SystemModel, !- Component 4 Object Type
+ VAV_1_Fan, !- Component 4 Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Component 4 Inlet Node Name
+ VAV_1 Supply Equipment Outlet Node; !- Component 4 Outlet Node Name
+
+ AirLoopHVAC:ControllerList,
+ VAV_1_OA_Controllers, !- Name
+ Controller:OutdoorAir, !- Controller 1 Object Type
+ VAV_1_OA_Controller; !- Controller 1 Name
+
+ AirLoopHVAC:OutdoorAirSystem:EquipmentList,
+ VAV_1_OA_Equipment, !- Name
+ OutdoorAir:Mixer, !- Component 1 Object Type
+ VAV_1_OAMixing Box; !- Component 1 Name
+
+ AirLoopHVAC:OutdoorAirSystem,
+ VAV_1_OA, !- Name
+ VAV_1_OA_Controllers, !- Controller List Name
+ VAV_1_OA_Equipment; !- Outdoor Air Equipment List Name
+
+ OutdoorAir:NodeList,
+ VAV_1_OANode List; !- Node or NodeList Name 1
+
+ OutdoorAir:Node,
+ VAV_1_CoolC Cond OA node;!- Name
+
+ OutdoorAir:Node,
+ VAV_1_CoolCOA Ref node; !- Name
+
+ OutdoorAir:Mixer,
+ VAV_1_OAMixing Box, !- Name
+ VAV_1_OA-VAV_1_CoolCNode,!- Mixed Air Node Name
+ VAV_1_OAInlet Node, !- Outdoor Air Stream Node Name
+ VAV_1_OARelief Node, !- Relief Air Stream Node Name
+ VAV_1 Supply Equipment Inlet Node; !- Return Air Stream Node Name
+
+ SetpointManager:MixedAir,
+ VAV_1_CoolC SAT Manager, !- Name
+ Temperature, !- Control Variable
+ VAV_1 Supply Equipment Outlet Node, !- Reference Setpoint Node Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Fan Inlet Node Name
+ VAV_1 Supply Equipment Outlet Node, !- Fan Outlet Node Name
+ VAV_1_CoolC-VAV_1_HeatCNode; !- Setpoint Node or NodeList Name
+
+ SetpointManager:MixedAir,
+ VAV_1_HeatC MixedAir Manager, !- Name
+ Temperature, !- Control Variable
+ VAV_1 Supply Equipment Outlet Node, !- Reference Setpoint Node Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Fan Inlet Node Name
+ VAV_1 Supply Equipment Outlet Node, !- Fan Outlet Node Name
+ VAV_1_HeatC-VAV_1_FanNode; !- Setpoint Node or NodeList Name
+
+ SetpointManager:MixedAir,
+ VAV_1_OAMixed Air Temp Manager, !- Name
+ Temperature, !- Control Variable
+ VAV_1 Supply Equipment Outlet Node, !- Reference Setpoint Node Name
+ VAV_1_HeatC-VAV_1_FanNode, !- Fan Inlet Node Name
+ VAV_1 Supply Equipment Outlet Node, !- Fan Outlet Node Name
+ VAV_1_OA-VAV_1_CoolCNode;!- Setpoint Node or NodeList Name
+
+ AirLoopHVAC:SupplyPath,
+ VAV_1, !- Name
+ VAV_1 Zone Equipment Inlet Node, !- Supply Air Path Inlet Node Name
+ AirLoopHVAC:ZoneSplitter,!- Component 1 Object Type
+ VAV_1 Supply Air Splitter; !- Component 1 Name
+
+ AirLoopHVAC:ZoneSplitter,
+ VAV_1 Supply Air Splitter, !- Name
+ VAV_1 Zone Equipment Inlet Node, !- Inlet Node Name
+ Perimeter_bot_ZN_1 VAV Box Inlet Node Name; !- Outlet 1 Node Name
+
+ AirLoopHVAC:ReturnPath,
+ VAV_1 Return Air Path, !- Name
+ VAV_1 Zone Equipment Outlet Node, !- Return Air Path Outlet Node Name
+ AirLoopHVAC:ReturnPlenum,!- Component 1 Object Type
+ VAV_1 Return Plenum, !- Component 1 Name
+ AirLoopHVAC:ZoneMixer, !- Component 2 Object Type
+ VAV_1 Return Air Mixer; !- Component 2 Name
+
+ AirLoopHVAC:ZoneMixer,
+ VAV_1 Return Air Mixer, !- Name
+ VAV_1 Zone Equipment Outlet Node, !- Outlet Node Name
+ FIRSTFLOOR_PLENUMPlenumOutletNode; !- Inlet 1 Node Name
+
+! ***SCHEDULES***
+
+ Schedule:Compact,
+ Dual Zone Control Type Sched, !- Name
+ Control Type, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,4; !- Field 3
+
+ Schedule:Compact,
+ CLGSETP_SCH, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays SummerDesignDay, !- Field 2
+ Until: 06:00,26.7, !- Field 3
+ Until: 22:00,24.0, !- Field 5
+ Until: 24:00,26.7, !- Field 7
+ For: Saturday, !- Field 9
+ Until: 06:00,26.7, !- Field 10
+ Until: 18:00,24.0, !- Field 12
+ Until: 24:00,26.7, !- Field 14
+ For WinterDesignDay, !- Field 16
+ Until: 24:00,26.7, !- Field 17
+ For: AllOtherDays, !- Field 19
+ Until: 24:00,26.7; !- Field 20
+
+ Schedule:Compact,
+ HTGSETP_SCH, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays, !- Field 2
+ Until: 06:00,15.6, !- Field 3
+ Until: 22:00,21.0, !- Field 5
+ Until: 24:00,15.6, !- Field 7
+ For SummerDesignDay, !- Field 9
+ Until: 24:00,15.6, !- Field 10
+ For: Saturday, !- Field 12
+ Until: 06:00,15.6, !- Field 13
+ Until: 18:00,21.0, !- Field 15
+ Until: 24:00,15.6, !- Field 17
+ For: WinterDesignDay, !- Field 19
+ Until: 24:00,21.0, !- Field 20
+ For: AllOtherDays, !- Field 22
+ Until: 24:00,15.6; !- Field 23
+
+ Schedule:Compact,
+ HVACOperationSchd, !- Name
+ On/Off, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays SummerDesignDay, !- Field 2
+ Until: 06:00,0.0, !- Field 3
+ Until: 22:00,1.0, !- Field 5
+ Until: 24:00,0.0, !- Field 7
+ For: Saturday WinterDesignDay, !- Field 9
+ Until: 06:00,0.0, !- Field 10
+ Until: 18:00,1.0, !- Field 12
+ Until: 24:00,0.0, !- Field 14
+ For: AllOtherDays, !- Field 16
+ Until: 24:00,0.0; !- Field 17
+
+ Schedule:Compact,
+ MinOA_MotorizedDamper_Sched, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays SummerDesignDay, !- Field 2
+ Until: 07:00,0.0, !- Field 3
+ Until: 22:00,1.0, !- Field 5
+ Until: 24:00,0.0, !- Field 7
+ For: Saturday WinterDesignDay, !- Field 9
+ Until: 07:00,0.0, !- Field 10
+ Until: 18:00,1.0, !- Field 12
+ Until: 24:00,0.0, !- Field 14
+ For: AllOtherDays, !- Field 16
+ Until: 24:00,0.0; !- Field 17
+
+ Schedule:Compact,
+ Seasonal-Reset-Supply-Air-Temp-Sch, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,12.8; !- Field 3
+
+! ***SWH EQUIPMENT***
+
+ WaterHeater:Mixed,
+ SWHSys1 Water Heater, !- Name
+ 0.3785, !- Tank Volume {m3}
+ SWHSys1 Water Heater Setpoint Temperature Schedule Name, !- Setpoint Temperature Schedule Name
+ 2.0, !- Deadband Temperature Difference {deltaC}
+ 82.2222, !- Maximum Temperature Limit {C}
+ Cycle, !- Heater Control Type
+ 845000, !- Heater Maximum Capacity {W}
+ , !- Heater Minimum Capacity {W}
+ , !- Heater Ignition Minimum Flow Rate {m3/s}
+ , !- Heater Ignition Delay {s}
+ NATURALGAS, !- Heater Fuel Type
+ 0.8, !- Heater Thermal Efficiency
+ , !- Part Load Factor Curve Name
+ 20, !- Off Cycle Parasitic Fuel Consumption Rate {W}
+ NATURALGAS, !- Off Cycle Parasitic Fuel Type
+ 0.8, !- Off Cycle Parasitic Heat Fraction to Tank
+ , !- On Cycle Parasitic Fuel Consumption Rate {W}
+ NATURALGAS, !- On Cycle Parasitic Fuel Type
+ , !- On Cycle Parasitic Heat Fraction to Tank
+ SCHEDULE, !- Ambient Temperature Indicator
+ SWHSys1 Water Heater Ambient Temperature Schedule Name, !- Ambient Temperature Schedule Name
+ , !- Ambient Temperature Zone Name
+ , !- Ambient Temperature Outdoor Air Node Name
+ 6.0, !- Off Cycle Loss Coefficient to Ambient Temperature {W/K}
+ , !- Off Cycle Loss Fraction to Zone
+ 6.0, !- On Cycle Loss Coefficient to Ambient Temperature {W/K}
+ , !- On Cycle Loss Fraction to Zone
+ , !- Peak Use Flow Rate {m3/s}
+ , !- Use Flow Rate Fraction Schedule Name
+ , !- Cold Water Supply Temperature Schedule Name
+ SWHSys1 Pump-SWHSys1 Water HeaterNode, !- Use Side Inlet Node Name
+ SWHSys1 Supply Equipment Outlet Node, !- Use Side Outlet Node Name
+ 1.0, !- Use Side Effectiveness
+ , !- Source Side Inlet Node Name
+ , !- Source Side Outlet Node Name
+ 1.0, !- Source Side Effectiveness
+ AUTOSIZE, !- Use Side Design Flow Rate {m3/s}
+ AUTOSIZE, !- Source Side Design Flow Rate {m3/s}
+ 1.5; !- Indirect Water Heating Recovery Time {hr}
+
+ WaterUse:Equipment,
+ Core_bottom Water Equipment, !- Name
+ , !- End-Use Subcategory
+ 1.04e-005, !- Peak Flow Rate {m3/s}
+ BLDG_SWH_SCH, !- Flow Rate Fraction Schedule Name
+ Water Equipment Temp Sched, !- Target Temperature Schedule Name
+ Water Equipment Hot Supply Temp Sched, !- Hot Water Supply Temperature Schedule Name
+ , !- Cold Water Supply Temperature Schedule Name
+ Perimeter_bot_ZN_1, !- Zone Name
+ Water Equipment Sensible fract sched, !- Sensible Fraction Schedule Name
+ Water Equipment Latent fract sched; !- Latent Fraction Schedule Name
+
+ Pump:ConstantSpeed,
+ SWHSys1 Pump, !- Name
+ SWHSys1 Supply Inlet Node, !- Inlet Node Name
+ SWHSys1 Pump-SWHSys1 Water HeaterNodeviaConnector, !- Outlet Node Name
+ AUTOSIZE, !- Design Flow Rate {m3/s}
+ 179352, !- Design Pump Head {Pa}
+ AUTOSIZE, !- Design Power Consumption {W}
+ 0.85, !- Motor Efficiency
+ 0.0, !- Fraction of Motor Inefficiencies to Fluid Stream
+ Intermittent, !- Pump Control Type
+ ; !- Pump Flow Rate Schedule Name
+
+ PlantEquipmentList,
+ SWHSys1 Equipment List, !- Name
+ WaterHeater:Mixed, !- Equipment 1 Object Type
+ SWHSys1 Water Heater; !- Equipment 1 Name
+
+! ***SWH SIZING & CONTROLS***
+
+ Sizing:Plant,
+ SWHSys1, !- Plant or Condenser Loop Name
+ Heating, !- Loop Type
+ 60, !- Design Loop Exit Temperature {C}
+ 5.0; !- Loop Design Temperature Difference {deltaC}
+
+ SetpointManager:Scheduled,
+ SWHSys1 Loop Setpoint Manager, !- Name
+ Temperature, !- Control Variable
+ SWHSys1-Loop-Temp-Schedule, !- Schedule Name
+ SWHSys1 Supply Outlet Node; !- Setpoint Node or NodeList Name
+
+ PlantEquipmentOperationSchemes,
+ SWHSys1 Loop Operation Scheme List, !- Name
+ PlantEquipmentOperation:HeatingLoad, !- Control Scheme 1 Object Type
+ SWHSys1 Operation Scheme,!- Control Scheme 1 Name
+ ALWAYS_ON; !- Control Scheme 1 Schedule Name
+
+ PlantEquipmentOperation:HeatingLoad,
+ SWHSys1 Operation Scheme,!- Name
+ 0.0, !- Load Range 1 Lower Limit {W}
+ 1000000000000000, !- Load Range 1 Upper Limit {W}
+ SWHSys1 Equipment List; !- Range 1 Equipment List Name
+
+! ***SWH LOOP***
+
+ PlantLoop,
+ SWHSys1, !- Name
+ Water, !- Fluid Type
+ , !- User Defined Fluid Type
+ SWHSys1 Loop Operation Scheme List, !- Plant Equipment Operation Scheme Name
+ SWHSys1 Supply Outlet Node, !- Loop Temperature Setpoint Node Name
+ 60.0, !- Maximum Loop Temperature {C}
+ 10.0, !- Minimum Loop Temperature {C}
+ AUTOSIZE, !- Maximum Loop Flow Rate {m3/s}
+ 0.0, !- Minimum Loop Flow Rate {m3/s}
+ AUTOSIZE, !- Plant Loop Volume {m3}
+ SWHSys1 Supply Inlet Node, !- Plant Side Inlet Node Name
+ SWHSys1 Supply Outlet Node, !- Plant Side Outlet Node Name
+ SWHSys1 Supply Branches, !- Plant Side Branch List Name
+ SWHSys1 Supply Connectors, !- Plant Side Connector List Name
+ SWHSys1 Demand Inlet Node, !- Demand Side Inlet Node Name
+ SWHSys1 Demand Outlet Node, !- Demand Side Outlet Node Name
+ SWHSys1 Demand Branches, !- Demand Side Branch List Name
+ SWHSys1 Demand Connectors, !- Demand Side Connector List Name
+ Optimal; !- Load Distribution Scheme
+
+! ***SWH CONNECTIONS***
+
+ BranchList,
+ SWHSys1 Demand Branches, !- Name
+ SWHSys1 Demand Inlet Branch, !- Branch 1 Name
+ SWHSYS1 DEMAND LOAD BRANCH 1, !- Branch 2 Name
+ SWHSys1 Demand Bypass Branch, !- Branch 3 Name
+ SWHSys1 Demand Outlet Branch; !- Branch 4 Name
+
+ BranchList,
+ SWHSys1 Supply Branches, !- Name
+ SWHSys1 Supply Inlet Branch, !- Branch 1 Name
+ SWHSys1 Supply Equipment Branch, !- Branch 2 Name
+ SWHSys1 Supply Equipment Bypass Branch, !- Branch 3 Name
+ SWHSys1 Supply Outlet Branch; !- Branch 4 Name
+
+ Branch,
+ SWHSys1 Demand Bypass Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pipe:Adiabatic, !- Component 1 Object Type
+ SWHSys1 Demand Bypass Pipe, !- Component 1 Name
+ SWHSys1 Demand Bypass Pipe Inlet Node, !- Component 1 Inlet Node Name
+ SWHSys1 Demand Bypass Pipe Outlet Node; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Demand Inlet Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pipe:Adiabatic, !- Component 1 Object Type
+ SWHSys1 Demand Inlet Pipe, !- Component 1 Name
+ SWHSys1 Demand Inlet Node, !- Component 1 Inlet Node Name
+ SWHSys1 Demand Inlet Pipe-SWHSys1 Demand Mixer; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Demand Load Branch 1, !- Name
+ , !- Pressure Drop Curve Name
+ WaterUse:Connections, !- Component 1 Object Type
+ Core_bottom Water Equipment, !- Component 1 Name
+ Core_bottom Water Equipment Water Inlet Node, !- Component 1 Inlet Node Name
+ Core_bottom Water Equipment Water Outlet Node; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Demand Outlet Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pipe:Adiabatic, !- Component 1 Object Type
+ SWHSys1 Demand Outlet Pipe, !- Component 1 Name
+ SWHSys1 Demand Mixer-SWHSys1 Demand Outlet Pipe, !- Component 1 Inlet Node Name
+ SWHSys1 Demand Outlet Node; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Supply Equipment Branch, !- Name
+ , !- Pressure Drop Curve Name
+ WaterHeater:Mixed, !- Component 1 Object Type
+ SWHSys1 Water Heater, !- Component 1 Name
+ SWHSys1 Pump-SWHSys1 Water HeaterNode, !- Component 1 Inlet Node Name
+ SWHSys1 Supply Equipment Outlet Node; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Supply Equipment Bypass Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pipe:Adiabatic, !- Component 1 Object Type
+ SWHSys1 Supply Equipment Bypass Pipe, !- Component 1 Name
+ SWHSys1 Supply Equip Bypass Inlet Node, !- Component 1 Inlet Node Name
+ SWHSys1 Supply Equip Bypass Outlet Node; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Supply Inlet Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pump:ConstantSpeed, !- Component 1 Object Type
+ SWHSys1 Pump, !- Component 1 Name
+ SWHSys1 Supply Inlet Node, !- Component 1 Inlet Node Name
+ SWHSys1 Pump-SWHSys1 Water HeaterNodeviaConnector; !- Component 1 Outlet Node Name
+
+ Branch,
+ SWHSys1 Supply Outlet Branch, !- Name
+ , !- Pressure Drop Curve Name
+ Pipe:Adiabatic, !- Component 1 Object Type
+ SWHSys1 Supply Outlet Pipe, !- Component 1 Name
+ SWHSys1 Supply Mixer-SWHSys1 Supply Outlet Pipe, !- Component 1 Inlet Node Name
+ SWHSys1 Supply Outlet Node; !- Component 1 Outlet Node Name
+
+ ConnectorList,
+ SWHSys1 Demand Connectors, !- Name
+ Connector:Splitter, !- Connector 1 Object Type
+ SWHSys1 Demand Splitter, !- Connector 1 Name
+ Connector:Mixer, !- Connector 2 Object Type
+ SWHSys1 Demand Mixer; !- Connector 2 Name
+
+ ConnectorList,
+ SWHSys1 Supply Connectors, !- Name
+ Connector:Splitter, !- Connector 1 Object Type
+ SWHSys1 Supply Splitter, !- Connector 1 Name
+ Connector:Mixer, !- Connector 2 Object Type
+ SWHSys1 Supply Mixer; !- Connector 2 Name
+
+ WaterUse:Connections,
+ Core_bottom Water Equipment, !- Name
+ Core_bottom Water Equipment Water Inlet Node, !- Inlet Node Name
+ Core_bottom Water Equipment Water Outlet Node, !- Outlet Node Name
+ , !- Supply Water Storage Tank Name
+ , !- Reclamation Water Storage Tank Name
+ , !- Hot Water Supply Temperature Schedule Name
+ , !- Cold Water Supply Temperature Schedule Name
+ , !- Drain Water Heat Exchanger Type
+ , !- Drain Water Heat Exchanger Destination
+ , !- Drain Water Heat Exchanger U-Factor Times Area {W/K}
+ Core_bottom Water Equipment; !- Water Use Equipment 1 Name
+
+ Connector:Splitter,
+ SWHSys1 Demand Splitter, !- Name
+ SWHSys1 Demand Inlet Branch, !- Inlet Branch Name
+ SWHSYS1 DEMAND LOAD BRANCH 1, !- Outlet Branch 1 Name
+ SWHSys1 Demand Bypass Branch; !- Outlet Branch 2 Name
+
+ Connector:Splitter,
+ SWHSys1 Supply Splitter, !- Name
+ SWHSys1 Supply Inlet Branch, !- Inlet Branch Name
+ SWHSys1 Supply Equipment Branch, !- Outlet Branch 1 Name
+ SWHSys1 Supply Equipment Bypass Branch; !- Outlet Branch 2 Name
+
+ Connector:Mixer,
+ SWHSys1 Demand Mixer, !- Name
+ SWHSys1 Demand Outlet Branch, !- Outlet Branch Name
+ SWHSYS1 DEMAND LOAD BRANCH 1, !- Inlet Branch 1 Name
+ SWHSys1 Demand Bypass Branch; !- Inlet Branch 2 Name
+
+ Connector:Mixer,
+ SWHSys1 Supply Mixer, !- Name
+ SWHSys1 Supply Outlet Branch, !- Outlet Branch Name
+ SWHSys1 Supply Equipment Branch, !- Inlet Branch 1 Name
+ SWHSys1 Supply Equipment Bypass Branch; !- Inlet Branch 2 Name
+
+ Pipe:Adiabatic,
+ SWHSys1 Demand Bypass Pipe, !- Name
+ SWHSys1 Demand Bypass Pipe Inlet Node, !- Inlet Node Name
+ SWHSys1 Demand Bypass Pipe Outlet Node; !- Outlet Node Name
+
+ Pipe:Adiabatic,
+ SWHSys1 Demand Inlet Pipe, !- Name
+ SWHSys1 Demand Inlet Node, !- Inlet Node Name
+ SWHSys1 Demand Inlet Pipe-SWHSys1 Demand Mixer; !- Outlet Node Name
+
+ Pipe:Adiabatic,
+ SWHSys1 Demand Outlet Pipe, !- Name
+ SWHSys1 Demand Mixer-SWHSys1 Demand Outlet Pipe, !- Inlet Node Name
+ SWHSys1 Demand Outlet Node; !- Outlet Node Name
+
+ Pipe:Adiabatic,
+ SWHSys1 Supply Equipment Bypass Pipe, !- Name
+ SWHSys1 Supply Equip Bypass Inlet Node, !- Inlet Node Name
+ SWHSys1 Supply Equip Bypass Outlet Node; !- Outlet Node Name
+
+ Pipe:Adiabatic,
+ SWHSys1 Supply Outlet Pipe, !- Name
+ SWHSys1 Supply Mixer-SWHSys1 Supply Outlet Pipe, !- Inlet Node Name
+ SWHSys1 Supply Outlet Node; !- Outlet Node Name
+
+! ***SWH SCHEDULES***
+
+ Schedule:Compact,
+ BLDG_SWH_SCH, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: Weekdays SummerDesignDay, !- Field 2
+ Until: 05:00,0.05, !- Field 3
+ Until: 06:00,0.08, !- Field 5
+ Until: 07:00,0.07, !- Field 7
+ Until: 08:00,0.19, !- Field 9
+ Until: 09:00,0.35, !- Field 11
+ Until: 10:00,0.38, !- Field 13
+ Until: 11:00,0.39, !- Field 15
+ Until: 12:00,0.47, !- Field 17
+ Until: 13:00,0.57, !- Field 19
+ Until: 14:00,0.54, !- Field 21
+ Until: 15:00,0.34, !- Field 23
+ Until: 16:00,0.33, !- Field 25
+ Until: 17:00,0.44, !- Field 27
+ Until: 18:00,0.26, !- Field 29
+ Until: 19:00,0.21, !- Field 31
+ Until: 20:00,0.15, !- Field 33
+ Until: 21:00,0.17, !- Field 35
+ Until: 22:00,0.08, !- Field 37
+ Until: 24:00,0.05, !- Field 39
+ For: Saturday WinterDesignDay, !- Field 41
+ Until: 05:00,0.05, !- Field 42
+ Until: 06:00,0.08, !- Field 44
+ Until: 07:00,0.07, !- Field 46
+ Until: 08:00,0.11, !- Field 48
+ Until: 09:00,0.15, !- Field 50
+ Until: 10:00,0.21, !- Field 52
+ Until: 11:00,0.19, !- Field 54
+ Until: 12:00,0.23, !- Field 56
+ Until: 13:00,0.20, !- Field 58
+ Until: 14:00,0.19, !- Field 60
+ Until: 15:00,0.15, !- Field 62
+ Until: 16:00,0.13, !- Field 64
+ Until: 17:00,0.14, !- Field 66
+ Until: 21:00,0.07, !- Field 68
+ Until: 22:00,0.09, !- Field 70
+ Until: 24:00,0.05, !- Field 72
+ For: Sunday Holidays AllOtherDays, !- Field 74
+ Until: 05:00,0.04, !- Field 75
+ Until: 06:00,0.07, !- Field 77
+ Until: 11:00,0.04, !- Field 79
+ Until: 13:00,0.06, !- Field 81
+ Until: 14:00,0.09, !- Field 83
+ Until: 15:00,0.06, !- Field 85
+ Until: 21:00,0.04, !- Field 87
+ Until: 22:00,0.07, !- Field 89
+ Until: 24:00,0.04; !- Field 91
+
+ Schedule:Compact,
+ Water Equipment Latent fract sched, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,0.05; !- Field 3
+
+ Schedule:Compact,
+ Water Equipment Sensible fract sched, !- Name
+ Fraction, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,0.2; !- Field 3
+
+ Schedule:Compact,
+ Water Equipment Hot Supply Temp Sched, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,43.3; !- Field 3
+
+ Schedule:Compact,
+ Water Equipment Temp Sched, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,43.3; !- Field 3
+
+ Schedule:Compact,
+ SWHSys1 Water Heater Ambient Temperature Schedule Name, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,22.0; !- Field 3
+
+ Schedule:Compact,
+ SWHSys1 Water Heater Setpoint Temperature Schedule Name, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,60.0; !- Field 3
+
+ Schedule:Compact,
+ SWHSys1-Loop-Temp-Schedule, !- Name
+ Temperature, !- Schedule Type Limits Name
+ Through: 12/31, !- Field 1
+ For: AllDays, !- Field 2
+ Until: 24:00,60.0; !- Field 3
+
+! ***ECONOMICS***
+! IN_EIAMonthlyRateGas, Source EIA historical Nov2003 thru Oct2004
+! Indiana 1999 state average electricity emissions factors based on eGRID, 1065, AirData
+! PSI_CS_CommercialElectricService, source http://www.cinergypsi.com/pdfs/RateCS.pdf, effective 2004-05-24
+! PSI_LLF_LowLoadFactorService,source http://www.cinergypsi.com/pdfs/RATELLF.pdf, effective 2004-05-24
+
+ UtilityCost:Tariff,
+ PSI_LLF_LowLoadFactorService, !- Name
+ Electricity:Facility, !- Output Meter Name
+ kWh, !- Conversion Factor Choice
+ , !- Energy Conversion Factor
+ , !- Demand Conversion Factor
+ , !- Time of Use Period Schedule Name
+ , !- Season Schedule Name
+ , !- Month Schedule Name
+ HalfHour, !- Demand Window Length
+ 15.00, !- Monthly Charge or Variable Name
+ , !- Minimum Monthly Charge or Variable Name
+ , !- Real Time Pricing Charge Schedule Name
+ , !- Customer Baseline Load Schedule Name
+ Comm Elect; !- Group Name
+
+ UtilityCost:Charge:Block,
+ AnnualEnergyCharge, !- Utility Cost Charge Block Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ , !- Remaining Into Variable
+ , !- Block Size Multiplier Value or Variable Name
+ 300, !- Block Size 1 Value or Variable Name
+ 0.108222, !- Block 1 Cost per Unit Value or Variable Name
+ 700, !- Block Size 2 Value or Variable Name
+ 0.087021, !- Block 2 Cost per Unit Value or Variable Name
+ 1500, !- Block Size 3 Value or Variable Name
+ 0.078420, !- Block 3 Cost per Unit Value or Variable Name
+ remaining, !- Block Size 4 Value or Variable Name
+ 0.058320; !- Block 4 Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Block,
+ AnnualDemandBaseCharge, !- Utility Cost Charge Block Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ , !- Remaining Into Variable
+ TotalDemand, !- Block Size Multiplier Value or Variable Name
+ 190, !- Block Size 1 Value or Variable Name
+ 0.0, !- Block 1 Cost per Unit Value or Variable Name
+ 110, !- Block Size 2 Value or Variable Name
+ 0.051773, !- Block 2 Cost per Unit Value or Variable Name
+ remaining, !- Block Size 3 Value or Variable Name
+ 0.046965; !- Block 3 Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ FuelCostAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.002028; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ QualPollutionControlAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000536; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ SoxNoxRiderAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.001127; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ DSMRiderAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ -0.000370; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ PurchPowerTrackerAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ -0.000031; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ MidwestISOAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ -0.000216; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ CleanCoalRiderEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000833; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Qualify,
+ MinDemand75kw, !- Utility Cost Qualify Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ TotalDemand, !- Variable Name
+ Minimum, !- Qualify Type
+ 75, !- Threshold Value or Variable Name
+ Annual, !- Season
+ Count, !- Threshold Test
+ 12; !- Number of Months
+
+ UtilityCost:Charge:Simple,
+ TaxofeightPercent, !- Utility Cost Charge Simple Name
+ PSI_LLF_LowLoadFactorService, !- Tariff Name
+ SubTotal, !- Source Variable
+ Annual, !- Season
+ Taxes, !- Category Variable Name
+ 0.08; !- Cost per Unit Value or Variable Name
+
+!end PSI_LLF_LowLoadFactorService
+
+ UtilityCost:Tariff,
+ PSI_CS_CommercialElectricService, !- Name
+ Electricity:Facility, !- Output Meter Name
+ kWh, !- Conversion Factor Choice
+ , !- Energy Conversion Factor
+ , !- Demand Conversion Factor
+ , !- Time of Use Period Schedule Name
+ , !- Season Schedule Name
+ , !- Month Schedule Name
+ , !- Demand Window Length
+ 9.40, !- Monthly Charge or Variable Name
+ , !- Minimum Monthly Charge or Variable Name
+ , !- Real Time Pricing Charge Schedule Name
+ , !- Customer Baseline Load Schedule Name
+ Comm Elect; !- Group Name
+
+ UtilityCost:Charge:Block,
+ AnnualEnergyCharge, !- Utility Cost Charge Block Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ , !- Remaining Into Variable
+ , !- Block Size Multiplier Value or Variable Name
+ 300, !- Block Size 1 Value or Variable Name
+ 0.082409, !- Block 1 Cost per Unit Value or Variable Name
+ 700, !- Block Size 2 Value or Variable Name
+ 0.072873, !- Block 2 Cost per Unit Value or Variable Name
+ 1500, !- Block Size 3 Value or Variable Name
+ 0.061696, !- Block 3 Cost per Unit Value or Variable Name
+ remaining, !- Block Size 4 Value or Variable Name
+ 0.041179; !- Block 4 Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ FuelCostAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.002028; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ QualPollutionControlAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000536; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ SoxNoxRiderAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.001127; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ DSMRiderAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000021; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ PurchPowerTrackerAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000034; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ MidwestISOAdjustEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ -0.000203; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Charge:Simple,
+ CleanCoalRiderEnergyCharge, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ 0.000807; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Qualify,
+ MaxDemand75kw, !- Utility Cost Qualify Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ TotalDemand, !- Variable Name
+ Maximum, !- Qualify Type
+ 75, !- Threshold Value or Variable Name
+ Annual, !- Season
+ Count, !- Threshold Test
+ 1; !- Number of Months
+
+ UtilityCost:Charge:Simple,
+ TaxofeightPercent, !- Utility Cost Charge Simple Name
+ PSI_CS_CommercialElectricService, !- Tariff Name
+ SubTotal, !- Source Variable
+ Annual, !- Season
+ Taxes, !- Category Variable Name
+ 0.08; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Tariff,
+ IN_EIAMonthlyRateGas, !- Name
+ NaturalGas:Facility, !- Output Meter Name
+ MCF, !- Conversion Factor Choice
+ , !- Energy Conversion Factor
+ , !- Demand Conversion Factor
+ , !- Time of Use Period Schedule Name
+ , !- Season Schedule Name
+ , !- Month Schedule Name
+ , !- Demand Window Length
+ 0.0, !- Monthly Charge or Variable Name
+ , !- Minimum Monthly Charge or Variable Name
+ , !- Real Time Pricing Charge Schedule Name
+ , !- Customer Baseline Load Schedule Name
+ Comm Gas; !- Group Name
+
+ UtilityCost:Charge:Simple,
+ MonthlyRateGasCharge, !- Utility Cost Charge Simple Name
+ IN_EIAMonthlyRateGas, !- Tariff Name
+ totalEnergy, !- Source Variable
+ Annual, !- Season
+ EnergyCharges, !- Category Variable Name
+ IN_MonthlyGasRates; !- Cost per Unit Value or Variable Name
+
+ UtilityCost:Variable,
+ IN_MonthlyGasRates, !- Name
+ IN_EIAMonthlyRateGas, !- Tariff Name
+ Currency, !- Variable Type
+ 8.22, !- January Value
+ 7.51, !- February Value
+ 8.97, !- March Value
+ 9.01, !- April Value
+ 9.16, !- May Value
+ 10.44, !- June Value
+ 10.32, !- July Value
+ 10.13, !- August Value
+ 9.20, !- September Value
+ 8.18, !- October Value
+ 7.83, !- November Value
+ 7.63; !- December Value
+
+ UtilityCost:Charge:Simple,
+ TaxofEightPercent, !- Utility Cost Charge Simple Name
+ IN_EIAMonthlyRateGas, !- Tariff Name
+ SubTotal, !- Source Variable
+ Annual, !- Season
+ Taxes, !- Category Variable Name
+ 0.08; !- Cost per Unit Value or Variable Name
+
+! ***GENERAL REPORTING***
+! Output:EnergyManagementSystem,
+! verbose, !- Actuator Availability Dictionary Reporting
+! verbose, !- Internal Variable Availability Dictionary Reporting
+! verbose; !- EMS Runtime Language Debug Output Level
+
+ OutputControl:ReportingTolerances,
+ 0.556, !- Tolerance for Time Heating Setpoint Not Met {deltaC}
+ 0.556; !- Tolerance for Time Cooling Setpoint Not Met {deltaC}
+
+ Output:SQLite,
+ SimpleAndTabular; !- Option Type
+
+ Output:VariableDictionary,IDF,Unsorted;
+
+ Output:Surfaces:List,Details;
+
+ Output:Surfaces:Drawing,DXF;
+
+ Output:Constructions,Constructions;
+
+! ***REPORT METERS/VARIABLES***
+
+ Output:Meter,Electricity:Facility,HOURLY;
+
+ Output:Meter,Fans:Electricity,HOURLY;
+
+ Output:Meter,Cooling:Electricity,TIMESTEP;
+
+ Output:Meter,Heating:Electricity,HOURLY;
+
+ Output:Meter,InteriorLights:Electricity,HOURLY;
+
+ Output:Meter,InteriorEquipment:Electricity,HOURLY;
+
+ Output:Meter,NaturalGas:Facility,HOURLY;
+
+ Output:Meter,Heating:NaturalGas,HOURLY;
+
+ Output:Meter,InteriorEquipment:NaturalGas,HOURLY;
+
+ Output:Meter,Water Heater:WaterSystems:NaturalGas,HOURLY;
+
+ Output:Variable,*,Site Outdoor Air Drybulb Temperature,HOURLY;
+
+ Output:Variable,*,Site Outdoor Air Humidity Ratio,HOURLY;
+
+ Output:Variable,*,Site Outdoor Air Relative Humidity,HOURLY;
+
+ Output:Variable,*,Boiler NaturalGas Energy,HOURLY;
+
+ Output:Variable,*,Boiler Inlet Temperature,HOURLY;
+
+ Output:Variable,*,Boiler Outlet Temperature,HOURLY;
+
+ Output:Variable,*,Boiler Part Load Ratio,HOURLY;
+
+ Output:Variable,*,Plant System Cycle On Off Status,HOURLY;
+
+ Output:Variable,*,Plant Supply Side Heating Demand Rate,HOURLY;
+
+ Output:Variable,*,Plant Supply Side Inlet Mass Flow Rate,HOURLY;
+
+ Output:Variable,*,Plant Supply Side Inlet Temperature,HOURLY;
+
+ Output:Variable,*,Plant Supply Side Outlet Temperature,HOURLY;
+
+ Output:Variable,*,Plant Supply Side Unmet Demand Rate,HOURLY;
+
+ Output:Variable,*,Air System Heating Coil Hot Water Energy,HOURLY;
+
+ Output:Variable,*,Air System Outdoor Air Flow Fraction,HOURLY;
+
+ Output:Variable,*,Air System Simulation Cycle On Off Status,HOURLY;
+
+ Output:Variable,*,Air System Outdoor Air Economizer Status,HOURLY;
+
+ Output:Variable,*,Air System Total Heating Energy,HOURLY;
+
+ Output:Variable,*,Air System Total Cooling Energy,HOURLY;
+
+ Output:Variable,*,Air System Fan Electricity Energy,HOURLY;
+
+ Output:Variable,*,Zone Mean Air Temperature,hourly;
+
+! ***REPORT TABLES***
+
+ OutputControl:Table:Style,
+ HTML; !- Column Separator
+
+ Output:Table:SummaryReports,
+ AnnualBuildingUtilityPerformanceSummary, !- Report 1 Name
+ InputVerificationandResultsSummary, !- Report 2 Name
+ ClimaticDataSummary, !- Report 3 Name
+ EnvelopeSummary, !- Report 4 Name
+ EquipmentSummary, !- Report 5 Name
+ ComponentSizingSummary, !- Report 6 Name
+ HVACSizingSummary, !- Report 7 Name
+ SystemSummary; !- Report 8 Name
+
+ Output:Table:Monthly,
+ Emissions Data Summary, !- Name
+ 4, !- Digits After Decimal
+ CO2:Facility, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ NOx:Facility, !- Variable or Meter 2 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 2
+ SO2:Facility, !- Variable or Meter 3 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 3
+ PM:Facility, !- Variable or Meter 4 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 4
+ Hg:Facility, !- Variable or Meter 5 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 5
+ WaterEnvironmentalFactors:Facility, !- Variable or Meter 6 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 6
+ Carbon Equivalent:Facility, !- Variable or Meter 7 Name
+ SumOrAverage; !- Aggregation Type for Variable or Meter 7
+
+ Output:Table:Monthly,
+ Components of Peak Electrical Demand, !- Name
+ 3, !- Digits After Decimal
+ Electricity:Facility, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ Electricity:Facility, !- Variable or Meter 2 Name
+ Maximum, !- Aggregation Type for Variable or Meter 2
+ InteriorLights:Electricity, !- Variable or Meter 3 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 3
+ InteriorEquipment:Electricity, !- Variable or Meter 4 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 4
+ Fans:Electricity, !- Variable or Meter 5 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 5
+ Heating:Electricity, !- Variable or Meter 6 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 6
+ Cooling:Electricity, !- Variable or Meter 7 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 7
+ ExteriorLights:Electricity, !- Variable or Meter 8 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 8
+ Pumps:Electricity, !- Variable or Meter 9 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 9
+ HeatRejection:Electricity, !- Variable or Meter 10 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 10
+ ExteriorEquipment:Electricity, !- Variable or Meter 11 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 11
+ Humidification:Electricity, !- Variable or Meter 12 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 12
+ HeatRecovery:Electricity,!- Variable or Meter 13 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 13
+ WaterSystems:Electricity,!- Variable or Meter 14 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 14
+ Refrigeration:Electricity, !- Variable or Meter 15 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 15
+ Generators:Electricity, !- Variable or Meter 16 Name
+ ValueWhenMaximumOrMinimum, !- Aggregation Type for Variable or Meter 16
+ ElectricityProduced:Facility, !- Variable or Meter 17 Name
+ ValueWhenMaximumOrMinimum; !- Aggregation Type for Variable or Meter 17
+
+ Output:Table:Monthly,
+ Boiler Part Load Performance, !- Name
+ 2, !- Digits After Decimal
+ Boiler Part Load Ratio, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ Boiler Part Load Ratio, !- Variable or Meter 2 Name
+ Maximum; !- Aggregation Type for Variable or Meter 2
+
+ Output:Table:Monthly,
+ Heating Part Load Performance, !- Name
+ 0, !- Digits After Decimal
+ Heating Coil NaturalGas Rate, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ Heating Coil NaturalGas Rate, !- Variable or Meter 2 Name
+ Maximum; !- Aggregation Type for Variable or Meter 2
+
+ Output:Table:Monthly,
+ Cooling Part Load Performance, !- Name
+ 0, !- Digits After Decimal
+ Cooling Coil Electricity Rate, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ Cooling Coil Electricity Rate, !- Variable or Meter 2 Name
+ Maximum; !- Aggregation Type for Variable or Meter 2
+
+ Output:Table:Monthly,
+ Fan Part Load Performance, !- Name
+ 0, !- Digits After Decimal
+ Fan Electricity Rate, !- Variable or Meter 1 Name
+ SumOrAverage, !- Aggregation Type for Variable or Meter 1
+ Fan Electricity Rate, !- Variable or Meter 2 Name
+ Maximum; !- Aggregation Type for Variable or Meter 2
+
+ Output:Table:TimeBins,
+ *, !- Key Value
+ Zone Air Relative Humidity, !- Variable Name
+ 60, !- Interval Start
+ 10, !- Interval Size
+ 4; !- Interval Count
+
+ Output:Table:TimeBins,
+ *, !- Key Value
+ Air System Outdoor Air Flow Fraction, !- Variable Name
+ 0.00, !- Interval Start
+ 0.20, !- Interval Size
+ 5; !- Interval Count
+
+ Output:Table:TimeBins,
+ *, !- Key Value
+ Availability Manager Night Cycle Control Status, !- Variable Name
+ 0, !- Interval Start
+ 1, !- Interval Size
+ 4; !- Interval Count
+
+! ***ENVIRONMENTAL FACTORS REPORTING***
+
+ Output:EnvironmentalImpactFactors,
+ Monthly; !- Reporting Frequency
+
+ EnvironmentalImpactFactors,
+ 0.663, !- District Heating Efficiency
+ 4.18, !- District Cooling COP {W/W}
+ 0.585, !- Steam Conversion Efficiency
+ 80.7272, !- Total Carbon Equivalent Emission Factor From N2O {kg/kg}
+ 6.2727, !- Total Carbon Equivalent Emission Factor From CH4 {kg/kg}
+ 0.2727; !- Total Carbon Equivalent Emission Factor From CO2 {kg/kg}
+
+! Indiana electricity source and emission factors based on Deru and Torcellini 2007
+
+ FuelFactors,
+ Electricity, !- Existing Fuel Resource Name
+ 3.546, !- Source Energy Factor {J/J}
+ , !- Source Energy Schedule Name
+ 3.417E+02, !- CO2 Emission Factor {g/MJ}
+ , !- CO2 Emission Factor Schedule Name
+ 1.186E-01, !- CO Emission Factor {g/MJ}
+ , !- CO Emission Factor Schedule Name
+ 7.472E-01, !- CH4 Emission Factor {g/MJ}
+ , !- CH4 Emission Factor Schedule Name
+ 6.222E-01, !- NOx Emission Factor {g/MJ}
+ , !- NOx Emission Factor Schedule Name
+ 8.028E-03, !- N2O Emission Factor {g/MJ}
+ , !- N2O Emission Factor Schedule Name
+ 1.872E+00, !- SO2 Emission Factor {g/MJ}
+ , !- SO2 Emission Factor Schedule Name
+ 0.0, !- PM Emission Factor {g/MJ}
+ , !- PM Emission Factor Schedule Name
+ 1.739E-02, !- PM10 Emission Factor {g/MJ}
+ , !- PM10 Emission Factor Schedule Name
+ 0.0, !- PM2.5 Emission Factor {g/MJ}
+ , !- PM2.5 Emission Factor Schedule Name
+ 0.0, !- NH3 Emission Factor {g/MJ}
+ , !- NH3 Emission Factor Schedule Name
+ 1.019E-02, !- NMVOC Emission Factor {g/MJ}
+ , !- NMVOC Emission Factor Schedule Name
+ 5.639E-06, !- Hg Emission Factor {g/MJ}
+ , !- Hg Emission Factor Schedule Name
+ 2.778E-05, !- Pb Emission Factor {g/MJ}
+ , !- Pb Emission Factor Schedule Name
+ 0.4309556, !- Water Emission Factor {L/MJ}
+ , !- Water Emission Factor Schedule Name
+ 0, !- Nuclear High Level Emission Factor {g/MJ}
+ , !- Nuclear High Level Emission Factor Schedule Name
+ 0; !- Nuclear Low Level Emission Factor {m3/MJ}
+
+! Deru and Torcellini 2007
+! Source Energy and Emission Factors for Energy Use in Buildings
+! NREL/TP-550-38617
+! source factor and Higher Heating Values from Table 5
+! post-combustion emission factors for boiler from Table 9 (with factor of 1000 correction for natural gas)
+
+ FuelFactors,
+ NaturalGas, !- Existing Fuel Resource Name
+ 1.092, !- Source Energy Factor {J/J}
+ , !- Source Energy Schedule Name
+ 5.21E+01, !- CO2 Emission Factor {g/MJ}
+ , !- CO2 Emission Factor Schedule Name
+ 3.99E-02, !- CO Emission Factor {g/MJ}
+ , !- CO Emission Factor Schedule Name
+ 1.06E-03, !- CH4 Emission Factor {g/MJ}
+ , !- CH4 Emission Factor Schedule Name
+ 4.73E-02, !- NOx Emission Factor {g/MJ}
+ , !- NOx Emission Factor Schedule Name
+ 1.06E-03, !- N2O Emission Factor {g/MJ}
+ , !- N2O Emission Factor Schedule Name
+ 2.68E-04, !- SO2 Emission Factor {g/MJ}
+ , !- SO2 Emission Factor Schedule Name
+ 0.0, !- PM Emission Factor {g/MJ}
+ , !- PM Emission Factor Schedule Name
+ 3.59E-03, !- PM10 Emission Factor {g/MJ}
+ , !- PM10 Emission Factor Schedule Name
+ 0.0, !- PM2.5 Emission Factor {g/MJ}
+ , !- PM2.5 Emission Factor Schedule Name
+ 0, !- NH3 Emission Factor {g/MJ}
+ , !- NH3 Emission Factor Schedule Name
+ 2.61E-03, !- NMVOC Emission Factor {g/MJ}
+ , !- NMVOC Emission Factor Schedule Name
+ 1.11E-07, !- Hg Emission Factor {g/MJ}
+ , !- Hg Emission Factor Schedule Name
+ 2.13E-07, !- Pb Emission Factor {g/MJ}
+ , !- Pb Emission Factor Schedule Name
+ 0, !- Water Emission Factor {L/MJ}
+ , !- Water Emission Factor Schedule Name
+ 0, !- Nuclear High Level Emission Factor {g/MJ}
+ , !- Nuclear High Level Emission Factor Schedule Name
+ 0; !- Nuclear Low Level Emission Factor {m3/MJ}
+
+ Output:Diagnostics,
+ DisplayExtrawarnings; !- Key 1
+
diff --git a/test/Resources/ec60.rad b/test/Resources/ec60.rad
new file mode 100644
index 0000000..30a8ca8
--- /dev/null
+++ b/test/Resources/ec60.rad
@@ -0,0 +1,11 @@
+void aBSDF ec_60
+5 Resources/ec60.xml 0 0 1 .
+0
+0
+
+ec_60 polygon Perimeter_bot_ZN_1_Wall_South_Window
+0
+0
+12 10.5 0.0 2.3293 10.5 0.0 1.0213 1.5 0.0 1.0213 1.5 0.0 2.3293
+
+
diff --git a/test/Resources/ec60.xml b/test/Resources/ec60.xml
new file mode 100644
index 0000000..e62599a
--- /dev/null
+++ b/test/Resources/ec60.xml
@@ -0,0 +1,149 @@
+
+
+System
+BSDF
+
+
+
+ ec60
+ Manufacturer
+ Other
+
+
+
+ Columns
+
+ LBNL/Klems Full
+
+ 0
+ 1
+
+ 0
+ 5
+
+
+
+ 10
+ 8
+
+ 5
+ 15
+
+
+
+ 20
+ 16
+
+ 15
+ 25
+
+
+
+ 30
+ 20
+
+ 25
+ 35
+
+
+
+ 40
+ 24
+
+ 35
+ 45
+
+
+
+ 50
+ 24
+
+ 45
+ 55
+
+
+
+ 60
+ 24
+
+ 55
+ 65
+
+
+
+ 70
+ 16
+
+ 65
+ 75
+
+
+
+ 82.5
+ 12
+
+ 75
+ 90
+
+
+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Transmission Front
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+
+
+
+ System
+ Visible
+ CIE Illuminant D65 1nm.ssp
+ ASTM E308 1931 Y.dsp
+
+ Transmission Back
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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+
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+ System
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+ CIE Illuminant D65 1nm.ssp
+ None
+
+ Transmission Front
+ LBNL/Klems Full
+ LBNL/Klems Full
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+
+
+
+ System
+ Solar
+ CIE Illuminant D65 1nm.ssp
+ None
+
+ Reflection Back
+ LBNL/Klems Full
+ LBNL/Klems Full
+ BTDF
+
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diff --git a/test/Resources/igsdb_product_7406.json b/test/Resources/igsdb_product_7406.json
new file mode 100644
index 0000000..61839ae
--- /dev/null
+++ b/test/Resources/igsdb_product_7406.json
@@ -0,0 +1 @@
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diff --git a/test/Resources/view1.vf b/test/Resources/view1.vf
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index 0000000..7f67264
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diff --git a/test/test_epjson2rad.py b/test/test_epjson2rad.py
index abd52aa..0cf0e84 100644
--- a/test/test_epjson2rad.py
+++ b/test/test_epjson2rad.py
@@ -1,22 +1,31 @@
import json
from pathlib import Path
-from frads import epjson2rad
-from frads.eprad import EPModel
+from frads import epjson_to_rad
+from frads.eprad import EnergyPlusModel
test_dir = Path(__file__).resolve().parent
def test_cfscase():
epjson1 = test_dir / "Resources" / "CmplxGlz_SingleZone_DoubleClearAir.epJSON"
- epmodel = EPModel(epjson1)
- rad_model: dict = epjson2rad(epmodel, epw="")
- assert rad_model['Room 102']['model']['sensors']['Room 102_Room102_Floor'] is not None
+ epmodel = EnergyPlusModel(epjson1)
+ rad_model: dict = epjson_to_rad(epmodel, epw="")
+ assert (
+ rad_model["Room 102"]["model"]["sensors"]["Room 102_Room102_Floor"] is not None
+ )
+
def test_refcase():
epjson2 = test_dir / "Resources" / "RefBldgMediumOfficeNew2004_Chicago.epJSON"
- epmodel = EPModel(epjson2)
- rad_model: dict = epjson2rad(epmodel, epw="")
- assert rad_model['Perimeter_bot_ZN_1']['model']['sensors']['Perimeter_bot_ZN_1_Perimeter_bot_ZN_1_Floor'] is not None
+ epmodel = EnergyPlusModel(epjson2)
+ rad_model: dict = epjson_to_rad(epmodel, epw="")
+ assert (
+ rad_model["Perimeter_bot_ZN_1"]["model"]["sensors"][
+ "Perimeter_bot_ZN_1_Perimeter_bot_ZN_1_Floor"
+ ]
+ is not None
+ )
+
if __name__ == "__main__":
test_cfscase()
diff --git a/test/test_eprad.py b/test/test_eprad.py
new file mode 100644
index 0000000..3fbee4a
--- /dev/null
+++ b/test/test_eprad.py
@@ -0,0 +1,99 @@
+from pathlib import Path
+
+from frads.eprad import EnergyPlusModel, EnergyPlusSetup
+from frads.window import GlazingSystem
+
+test_dir = Path(__file__).resolve().parent
+resource_dir = test_dir / "Resources"
+
+idf_path = resource_dir / "RefBldgMediumOfficeNew2004_southzone.idf"
+glazing_path = resource_dir / "igsdb_product_7406.json"
+
+
+def test_energyplusmodel():
+ epmodel = EnergyPlusModel(idf_path)
+ assert isinstance(epmodel.epjs, dict)
+ assert isinstance(epmodel.floors, list)
+ assert isinstance(epmodel.zones, list)
+ assert isinstance(epmodel.window_walls, list)
+ assert isinstance(epmodel.windows, list)
+ assert isinstance(epmodel.lighting_zones, list)
+ assert isinstance(epmodel.complex_fenestration_states, list)
+
+
+def test_add_glazingsystem():
+ epmodel = EnergyPlusModel(idf_path)
+ gs = GlazingSystem()
+ gs.add_glazing_layer(glazing_path)
+ epmodel.add_glazing_system(gs)
+ assert isinstance(epmodel.complex_fenestration_states, list)
+ assert epmodel.complex_fenestration_states != []
+ assert isinstance(epmodel.epjs["Construction:ComplexFenestrationState"], dict)
+ assert isinstance(epmodel.epjs["Matrix:TwoDimension"], dict)
+ assert isinstance(epmodel.epjs["WindowMaterial:Glazing"], dict)
+ assert isinstance(epmodel.epjs["WindowMaterial:Gas"], dict)
+ assert isinstance(epmodel.epjs["WindowMaterial:Gap"], dict)
+ assert isinstance(epmodel.epjs["WindowMaterial:ComplexShade"], dict)
+ assert isinstance(epmodel.epjs["WindowThermalModel:Params"], dict)
+
+
+def test_add_lighting():
+ epmodel = EnergyPlusModel(idf_path)
+ try:
+ epmodel.add_lighting("z1") # zone does not exist
+ assert False
+ except ValueError:
+ pass
+
+
+def test_add_lighting1():
+ epmodel = EnergyPlusModel(idf_path)
+ try:
+ epmodel.add_lighting("Perimeter_bot_ZN_1") # zone already has lighting
+ assert False
+ except ValueError:
+ pass
+
+
+def test_add_lighting2():
+ epmodel = EnergyPlusModel(idf_path)
+ epmodel.add_lighting("Perimeter_bot_ZN_1", replace=True)
+
+ assert isinstance(epmodel.epjs["Lights"], dict)
+ assert isinstance(epmodel.epjs["Schedule:Constant"], dict)
+ assert isinstance(epmodel.epjs["ScheduleTypeLimits"], dict)
+
+
+def test_output_variable():
+ """Test adding output variable to an EnergyPlusModel."""
+ epmodel = EnergyPlusModel(idf_path)
+ epmodel.add_output(output_name="Zone Mean Air Temperature", output_type="variable")
+
+ assert "Zone Mean Air Temperature" in [
+ i["variable_name"] for i in epmodel.epjs["Output:Variable"].values()
+ ]
+
+
+def test_output_meter():
+ """Test adding output meter to an EnergyPlusModel."""
+ epmodel = EnergyPlusModel(idf_path)
+ epmodel.add_output(
+ output_name="CO2:Facility",
+ output_type="meter",
+ reporting_frequency="Hourly",
+ )
+
+ assert "CO2:Facility" in [
+ i["key_name"] for i in epmodel.epjs["Output:Meter"].values()
+ ]
+ assert "Hourly" in [
+ i["reporting_frequency"] for i in epmodel.epjs["Output:Meter"].values()
+ ]
+
+
+def test_energyplussetup():
+ """Test running EnergyPlusSetup."""
+ epmodel = EnergyPlusModel(idf_path) # file with Design Day
+
+ ep = EnergyPlusSetup(epmodel)
+ ep.run(design_day=True)
diff --git a/test/test_methods.py b/test/test_methods.py
index 4d6284e..74ea859 100644
--- a/test/test_methods.py
+++ b/test/test_methods.py
@@ -1,8 +1,14 @@
from pathlib import Path
from datetime import datetime
from frads.methods import TwoPhaseMethod, ThreePhaseMethod, WorkflowConfig
+from frads.window import GlazingSystem
+from frads.epjson2rad import epjson_to_rad
+from frads.eprad import EnergyPlusModel
+import frads as fr
+import numpy as np
test_dir = Path(__file__).parent.resolve()
+resource_dir = test_dir / "Resources"
reinsrc6_path = Path("Resources", "reinsrc6.rad")
grid_path = Path("Resources", "grid.pts")
prim_path = Path("Resources/model/Objects/floor_openroom.rad")
@@ -42,12 +48,10 @@
"files": [f"{test_dir}/Objects/materials.mat"],
},
"sensors": {
- 'wpi': {
- "file": f"{test_dir}/Resources/grid.txt"
+ "wpi": {"file": f"{test_dir}/Resources/grid.txt"},
+ "view1": {
+ "data": [[17, 5, 4, 1, 0, 0]],
},
- 'view1': {
- 'data': [[17, 5, 4, 1, 0, 0]],
- }
},
"views": {
"view1": {"file": f"{test_dir}/Resources/v1a.vf", "xres": 16, "yres": 16}
@@ -55,6 +59,7 @@
},
}
+
def test_two_phase():
time = datetime(2023, 1, 1, 12)
dni = 800
@@ -62,34 +67,94 @@ def test_two_phase():
config = WorkflowConfig.from_dict(cfg)
workflow = TwoPhaseMethod(config)
workflow.generate_matrices()
- res = workflow.calculate_sensor('wpi', time, dni, dhi)
+ res = workflow.calculate_sensor("wpi", time, dni, dhi)
assert res.shape == (195, 1)
+
def test_three_phase():
time = datetime(2023, 1, 1, 12)
dni = 800
dhi = 100
config = WorkflowConfig.from_dict(cfg)
- lower_glass = f"{test_dir}/Objects/lower_glass.rad"
+ lower_glass = f"{test_dir}/Objects/lower_glass.rad"
upper_glass = f"{test_dir}/Objects/upper_glass.rad"
workflow = ThreePhaseMethod(config)
workflow.generate_matrices(view_matrices=False)
workflow.calculate_sensor(
- 'wpi',
- [workflow.window_bsdfs['upper_glass'], workflow.window_bsdfs['lower_glass']],
- time,
- dni,
- dhi
+ "wpi",
+ [workflow.window_bsdfs["upper_glass"], workflow.window_bsdfs["lower_glass"]],
+ time,
+ dni,
+ dhi,
)
res = workflow.calculate_edgps(
- 'view1',
+ "view1",
[lower_glass, upper_glass],
- [workflow.window_bsdfs['upper_glass'], workflow.window_bsdfs['lower_glass']],
- time,
- dni,
+ [workflow.window_bsdfs["upper_glass"], workflow.window_bsdfs["lower_glass"]],
+ time,
+ dni,
dhi,
)
- res = workflow.calculate_sensor_from_wea('wpi')
+ res = workflow.calculate_sensor_from_wea("wpi")
+
+
+def test_eprad_threephase():
+ """
+ Integration test for ThreePhaseMethod using EnergyPlusModel and GlazingSystem
+ """
+ idf_path = resource_dir / "RefBldgMediumOfficeNew2004_Chicago.idf"
+ view_path = resource_dir / "view1.vf"
+ epw_path = resource_dir / "USA_CA_Oakland.Intl.AP.724930_TMY3.epw"
+ clear_glass_path = resource_dir / "CLEAR_3.DAT"
+ product_7406_path = resource_dir / "igsdb_product_7406.json"
+ shade_path = resource_dir / "ec60.rad"
+ shade_bsdf_path = resource_dir / "ec60.xml"
+
+ epmodel = EnergyPlusModel(idf_path)
+ gs_ec60 = GlazingSystem()
+ gs_ec60.add_glazing_layer(product_7406_path)
+ gs_ec60.add_glazing_layer(clear_glass_path)
+ gs_ec60.gaps = [((fr.AIR, 0.1), (fr.ARGON, 0.9), 0.0127)]
+ gs_ec60.name = "ec60"
+ epmodel.add_glazing_system(gs_ec60)
+ rad_models = epjson_to_rad(epmodel, epw=epw_path)
+ zone = "Perimeter_bot_ZN_1"
+ zone_dict = rad_models[zone]
+ zone_dict["model"]["views"]["view1"] = {"file": view_path, "xres": 16, "yres": 16}
+ zone_dict["model"]["sensors"]["view1"] = {"data": [[17, 5, 4, 1, 0, 0]]}
+ rad_cfg = WorkflowConfig.from_dict(zone_dict)
+ rad_workflow = ThreePhaseMethod(rad_cfg)
+ rad_workflow.generate_matrices()
+ dni = 800
+ dhi = 100
+ dt = datetime(2023, 1, 1, 12)
+ tmx = fr.load_matrix(shade_bsdf_path)
+ edgps = rad_workflow.calculate_edgps(
+ view="view1",
+ shades=[shade_path],
+ bsdf=tmx,
+ date_time=dt,
+ dni=dni,
+ dhi=dhi,
+ ambient_bounce=1,
+ )
+
+ assert "view1" in rad_workflow.view_senders
+ assert rad_workflow.view_senders["view1"].view.vtype == "a"
+ assert rad_workflow.view_senders["view1"].view.position == [6.0, 7.0, 0.76]
+ assert rad_workflow.view_senders["view1"].view.direction == [0.0, -1.0, 0.0]
+ assert rad_workflow.view_senders["view1"].view.horiz == 180
+ assert rad_workflow.view_senders["view1"].view.vert == 180
+ assert rad_workflow.view_senders["view1"].xres == 16
+
+ assert np.sum(tmx) != 0
+ assert tmx.shape == (145, 145, 3)
+ assert list(rad_workflow.daylight_matrices.values())[0].array.shape == (145, 146, 3)
+ assert (
+ list(rad_workflow.sensor_window_matrices.values())[0].ncols == [145]
+ and list(rad_workflow.sensor_window_matrices.values())[0].ncomp == 3
+ )
+ assert edgps >= 0 and edgps <= 1
# def test_assemble_model():
@@ -128,4 +193,5 @@ def test_three_phase():
if __name__ == "__main__":
- test_assemble_model()
+ # test_assemble_model()
+ test_three_phase()
diff --git a/test/test_window.py b/test/test_window.py
index 846add5..d56cbd0 100644
--- a/test/test_window.py
+++ b/test/test_window.py
@@ -1,18 +1,131 @@
-import os
from pathlib import Path
-import shutil
-import sys
-sys.path.append(".")
+from frads.window import GlazingSystem, AIR, ARGON
-from frads import window
-import pywincalc as pwc
-test_dir = Path(__file__).resolve().parent
+test_dir = Path(__file__).parent.resolve()
+resource_dir = test_dir / "Resources"
-def test_window():
- # Create a window
- gs = window.GlazingSystem()
- gs.add_glazing_layer(test_dir / "Resources" / "igsdb_product_7968.json")
- gs.compute_solar_photopic_results()
+glass_path = resource_dir / "CLEAR_3.DAT"
+shade_path = resource_dir / "2011-SA1.xml"
+
+
+def test_simple_glazingsystem():
+ """
+ Test the GlazingSystem class.
+ Build a GlazingSystem object consisting of two layer of clear glass.
+
+ Check the thickness of the glazing system.
+ Check the order and name of the layers.
+ Check the composition of the default gap.
+ """
+ gs = GlazingSystem()
+ gs.add_glazing_layer(glass_path)
+ gs.add_glazing_layer(glass_path)
+
+ assert gs.layers[0].product_name == "Generic Clear Glass"
+ assert gs.layers[1].product_name == "Generic Clear Glass"
+ assert gs.name == f"{gs.layers[0].product_name}_{gs.layers[1].product_name}"
+ assert gs.gaps[0][0][0] == AIR
+ assert gs.gaps[0][0][1] == 1
+ assert gs.gaps[0][1] == 0.0127
+ assert round(gs._thickness, 6) == round(
+ sum(
+ [
+ gs.layers[0].thickness / 1e3,
+ gs.gaps[0][1],
+ gs.layers[1].thickness / 1e3,
+ ]
+ ),
+ 6,
+ )
+
+
+def test_customized_gap():
+ """
+ Test the building of a customized gap.
+ A 0.03 m thick gap between the two glass layers. The gap is filled with 90% argon and 10% air.
+
+ Check the thickness of the glazing system.
+ Check the order and composition of the gap.
+ """
+ gs = GlazingSystem()
+ gs.add_glazing_layer(glass_path)
+ gs.add_glazing_layer(glass_path)
+ gs.gaps = [((AIR, 0.1), (ARGON, 0.9), 0.03)]
+
+ assert gs.gaps[0][0][0] == AIR
+ assert gs.gaps[0][0][1] == 0.1
+ assert gs.gaps[0][1][0] == ARGON
+ assert gs.gaps[0][1][1] == 0.9
+ assert gs.gaps[0][2] == 0.03
+ assert round(gs._thickness, 6) == round(
+ sum(
+ [
+ gs.layers[0].thickness / 1e3,
+ gs.gaps[0][2],
+ gs.layers[1].thickness / 1e3,
+ ]
+ ),
+ 6,
+ )
+def test_multilayer_glazing_shading():
+ """
+ Test GlazingSystem object with multiple layers of glazing and shading and more than one customized gap.
+
+ Check the thickness of the glazing system.
+ Check the order of the layers.
+ Check the order and composition of the gaps.
+ """
+ gs = GlazingSystem()
+ gs.add_glazing_layer(glass_path)
+ gs.add_glazing_layer(glass_path)
+ gs.add_shading_layer(shade_path)
+ gs.gaps = [((AIR, 0.1), (ARGON, 0.9), 0.03), ((AIR, 1), 0.01)]
+
+ assert gs.layers[0].product_name == "Generic Clear Glass"
+ assert gs.layers[1].product_name == "Generic Clear Glass"
+ assert gs.layers[2].product_name == "Satine 5500 5%, White Pearl"
+
+ assert (
+ gs.name
+ == f"{gs.layers[0].product_name}_{gs.layers[1].product_name}_{gs.layers[2].product_name}"
+ )
+ assert gs.gaps[0][0][0] == AIR
+ assert gs.gaps[0][0][1] == 0.1
+ assert gs.gaps[0][1][0] == ARGON
+ assert gs.gaps[0][1][1] == 0.9
+ assert gs.gaps[0][2] == 0.03
+ assert gs.gaps[1][0][0] == AIR
+ assert gs.gaps[1][0][1] == 1
+ assert gs.gaps[1][1] == 0.01
+ assert round(gs._thickness, 6) == round(
+ sum(
+ [
+ gs.layers[0].thickness / 1e3,
+ gs.gaps[0][2],
+ gs.layers[1].thickness / 1e3,
+ gs.gaps[1][1],
+ gs.layers[2].thickness / 1e3,
+ ]
+ ),
+ 6,
+ )
+
+ assert gs.photopic_results is None
+ assert gs.solar_results is None
+
+
+def test_compute_results():
+ """
+ Test the computation of the solar and photopic results.
+
+ Check the results are not None.
+ """
+ gs = GlazingSystem()
+ gs.add_glazing_layer(glass_path)
+ gs.compute_solar_photopic_results()
+
+ assert gs.photopic_results is not None
+ assert gs.solar_results is not None