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, 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+ 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 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/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 + +7.400856722329012 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 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\ No newline at end of file diff --git a/test/Resources/view1.vf b/test/Resources/view1.vf new file mode 100644 index 0000000..7f67264 --- /dev/null +++ b/test/Resources/view1.vf @@ -0,0 +1 @@ +rvu -vta -vp 6 7 0.76 -vd 0 -1 0 -vu 0 0 1 -vh 180 -vv 180 -vo 0 -va 0 -vs 0 -vl 0 \ No newline at end of file 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