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Heat Exchanger Coal Boiler Superheater And Reheater For Generating Furnace
Description
The function of Super heater in the thermal power plant is to
remove the last traces of moisture from the saturated steam coming
out of boiler and to increase its temperature above saturation
temperature as per requirement at inlet of steam turbine.
Details
Superheating raises overall efficiency as well as avoids too much
condensation in last stages of turbine which avoids blade erosion.
The heat of combustion gases from furnace is utilised for removal
of moisture from steam and to superheat the steam.
Super-heaters ususlly have several tube circuits in parallel with
one or more return bends,connected between headers.
Heat from the hot gases to the vapour in the surperheater is
transferred at high temperatures.
Therefore promary section of superheater is arranged in counterflow
and secondary section in parallel flow to reduce the temp.stressing
of the tube wall.
Principle
Principle of superheater is similar to steam generating tubes of
boiler.
The hot gases at high temperature sweep over superheater tubes and
raise the temperature of steam which magnitude depends upon exit
gas temperature leaving the superheater and gas velocity.
use for heating saturated steam, steam temperature could be up to
900 degree C.
Superheater Capacity Upgrades to Increase Power Generation
Send us required technical data, such as steam capacity, presure,
required temperature etc. We will design accordingly.
Function
Superheater is to increase the temperature of the steam above its saturation
point.
Reheater is basically a superheater that superheats steam exiting the
high-pressure stage of a turbine. The reheated steam is then sent
to the low-pressure stage of the turbine. By reheating steam
between high-pressure and low-pressure turbine it is possible to
increase the electrical efficiency of the power plant cycle beyond
40%.The reheat cycle is used in large power boilers since it is
feasible economically only in larger power plants.
Advantages & Disadvantages
Pendant-type 1.Firm structural support 1. Flow blockage by condensed steam 2. Needs slow restart to purge the water that accumulates in the bottom. supported from above |
Inverted-type 1.Proper drainage of the condensed steam 1. Lack the structural rigidity, especially in high speed gas flow Supported from below |
Horizontal -type 1. Proper drainage 2. Good structural rigidity. |
They do not view the flam directly so they are mainly from the
convective type Usually supported in the vertical gas ducts
parallel to the main furnace.
Advance technology
1 | HDB has extensive experience using their remaining useful life analysis system to predict the lifespan of tubes. |
2 | The system measures the oxide and wall thickness of the tube during an on-site non-destructive test and this is used to calculate the remaining useful life. |
3 | HDB developed the oxide measuring technology in 1991 and it is now used as the standard throughout the world. |
Details
1 | Material composition | Carbon steel, alloy steel or heat-resistant steel, collection boxes and other supporting material. Tubes are customized types of specifications. |
2 | Design pattern | Vertical or horizontal layout. |
3 | Advantages | Beautiful appearance, size, accuracy, first-class bending and welding technology, first-class detection equipment. |
Product Function
1.The function of the superheater in the thermal power plant is to remove the last traces of moisture ( 1 to 2%) from the saturated steam coming out of boiler and to increase its temperature sufficiently above saturation temperature.
2.The super-heating heating raises overall overall cycle efficiency efficiency as well as avoids too much condensation in the last stages of the turbine which avoids the blade erosion.
3.The heat of combustion gases from furnace is utilized for the removal of moisture from steam and to superheat the steam.
4.Super-heaters usually have several tube circuits in parallel with one or more return bends, connected between headers.
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