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boilerAuxiliary.html
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<!--Products-->
<div class="container products">
<h1 class="main-heading">Boiler Auxiliary</h1>
<div class="row">
<div class="heading">
<h3>Chimney</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/Chimney.jpg">
</div>
<div>
<p class="products-description">
The chimney is a tall structure used to ventilate or exhaust off all gases
generated during the Combustion of Fuel. Although it may be self-supported
or supported by ropes, a huge structure made of steel or concrete but its
primary function is just to vent off poisonous or harmful gases at a height
where it does not come in contact with any human.
</p>
</div>
</div>
</div>
<hr>
<div class="row">
<div class="heading" center>
<h3>Air Pre-Heater</h3>
</div>
<div class="content">
<div class="float-md-left float-lg-left img-left">
<img src="./assets/pics/Boiler Auxiliary/APH.png" alt="APH">
</div>
<p class="products-description">
Along with manufacturing, installation of boilers, MHP Thermal also
perform boiler operation and maintenance tasks on sites. Boiler
maintenance is not very complex but do require some short of
experience.Keeping this point in mind MHP Thermal made a team
of semi and highly skilled technicians, who can accomplish the
Boiler operation and keep on looking for boiler maintenance.
</p>
</div>
</div>
<hr>
<div class="row">
<div class="heading">
<h3>Water Pre-Heater</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/Water Pre Heater.jpg">
</div>
<div>
<p class="products-description">
A water pre-heater absorbs the flue gas heat into water thus, utilizing the heat
from the exhaust gas which would otherwise be wasted. Plant efficiency is therefore
further increased when viewed with respect to actual energy content of the fuel.
</p>
</div>
</div>
</div>
<hr>
<div class="row">
<div class="heading" center>
<h3>Induced Draught fan</h3>
</div>
<div class="content">
<div class="float-md-left float-lg-left img-left">
<img src="./assets/pics/Boiler Auxiliary/ID fan.jpg" alt="ID fan">
</div>
<p class="products-description">
ID fan is always located between dust collector and chimney. ID fan will take the hot
flue gases from furnace via dust collector (dust separation system or Fume Extraction
system) and will deliver to chimney. ID fan will handle the flue gases i.e. hot air.
</p>
</div>
</div>
<hr>
<div class="row">
<div class="heading">
<h3>Forced Draught fan</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/FD fan.jpg">
</div>
<div>
<p class="products-description">
Forced Draught fan is used basically for providing the required quantity of hot air to the furnace
for
smooth and uniform combustion of fuel. FD fan will produce the positive pressure
inside the system i.e. furnace.
</p>
</div>
</div>
</div>
<hr>
<div class="row">
<div class="heading" center>
<h3>Pipeline</h3>
</div>
<div class="content">
<div class="float-md-left float-lg-left img-left">
<img src="./assets/pics/Boiler Auxiliary/pipeline.jpg" alt="pipeline">
</div>
<p class="products-description">
<strong>IBR steam pipe:</strong>Pipe through which steam passes from a boiler
to a prime mover or other user or both if pressure at which steam passes through
such pipes exceeds 3.5 kg/cm2 above atmospheric pressure or such pipe exceeds 254 mm
in internal diameter and includes in either case any connected fitting of a steam pipe.
<br>
<strong>Non-IBR:</strong>Steam producing vessel or equipment having water holding
capacity less than 25 liters and producing steam below 1 kg/cm2.
</p>
</div>
</div>
<div class="row">
<div class="heading" center>
<h3>Ducting</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/Ducting.jpg" alt="pipeline">
</div>
<p class="products-description">
Duct is a passage whose purpose is to to deliver and remove air. The needed airflows include, for
example, supply air, return air, and exhaust air.[1] Ducts commonly also deliver ventilation air as part
of the supply air. As such, air ducts are one method of ensuring acceptable indoor air quality as well
as thermal comfort
<br>
</p>
</div>
</div>
<div class="row">
<div class="heading" center>
<h3>Steam Headers</h3>
</div>
<div class="content">
<div class="float-md-left float-lg-left img-left">
<img src="./assets/pics/Boiler Auxiliary/STEAM HEADER.jpeg" alt="pipeline">
</div>
<p class="products-description">
The Steam Header receives steam from one or more (maximum 8) boilers, and holds it under pressure.
Downstream equipment receives the stored steam on demand. Header capacity is determined by user
configurable dimensions. Pressure difference is used as the driving force to transfer steam from the
boilers into the header, or from header to header, and from the header to downstream equipment. The flow
calculations between the boilers and the header ensure a balanced transfer so that the header pressure
does not exceed the feeding boilers.
</p>
</div>
</div>
<div class="row">
<div class="heading" center>
<h3>Pressure Reducing System</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/PRS.jpg" alt="pipeline">
</div>
<p class="products-description">
Pressure reducing stations (PRS) is the arrangement of certain valves which is used to provide the
desired steam pressure at user’s end. Steam coming from the Boiler, through the steam line, enters the
PRS at a higher pressure and leaves the PRS at reduced (specified) pressure, in this the flow of the
steam remains constant. Like Steam Boiler, PRS is also pressure equipment.
</p>
</div>
</div>
<div class="row">
<div class="heading" center>
<h3>Pressure Reducing Valve</h3>
</div>
<div class="content">
<div class="float-md-left float-lg-left img-left">
<img src="./assets/pics/Boiler Auxiliary/PRV.jpg" alt="pipeline">
</div>
<p class="products-description">
Pressure-reducing valves provide a steady pressure into a part of the system that operates at a pressure
lower that normal system pressure. A reducing valve can normally be set for any desired downstream
pressure within its design limits. Once the valve is set, the reduced pressure will be maintained
regardless of changes in the supply pressure and system load variations.
There are various designs and types of pressure-regulating valves. The spring-loaded reducer and the
pilot-controlled valve are the most common.
</p>
</div>
</div>
<div class="row">
<div class="heading" center>
<h3>Expansion Bellows</h3>
</div>
<div class="content">
<div class="float-md-right float-lg-right img-right">
<img src="./assets/pics/Boiler Auxiliary/Expansion bellows.png" alt="pipeline">
</div>
<p class="products-description">
Metallic Expansion Joints are installed in pipe work and duct systems to prevent damage caused by
thermal growth, vibration, pressure thrust and other mechanical forces.
There is a wide range of metallic bellows designs in a variety of materials. Options range from the
simplest convoluted bellows used in petroleum refineries.
Materials include all types of stainless steels and high grade nickel alloy steels.
</p>
</div>
</div>
</div>
<div id="body"></div>