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T91 T92 Superheater and Reheater Coils for Power Plant Boilers

T91 T92 Superheater and Reheater Coils for Power Plant Boilers

MOQ: 1 set / 10tons
Price: Negotiable
Standard Packaging: Seaworthy packing
Delivery Period: 50 ~ 100 Days
Payment Method: L/C, T/T, Western Union
Supply Capacity: 1500 Tons / Month
Detail Information
Place of Origin
China
Brand Name
HD BOILER
Certification
ISO9001 , SGS , TUV , ASME , EN
Model Number
Superheater and Reheater
Material:
T91 / T92
Welding Material:
Nickel Base
Product Name:
Superheater And Reheater Coils
Color:
Customized
Application:
Power Plant Boiler,Heat Recovery, Industry
Pressure:
Low/High Pressure
Highlight:

T91 T92 superheater coils

,

power plant boiler reheater coils

,

superheater and reheater with warranty

Product Description
Heat Transfer Design Function Superheater And Reheater Thermal Power Plants
Attribute Value
Material T91 / T92
Welding material Nickel base
Product Name Superheater and Reheater Coils
Color Customized
Application Power Plant Boiler, Heat Recovery, Industry
Pressure Low/High Pressure
Customized Power Plant Solutions SA192 Serpentine Superheater And Reheater Parts
What materials are commonly used for superheaters and reheaters?

Alloy steels (e.g., chrome-molybdenum) for high-temperature resistance.

Product Display
T91 T92 Superheater and Reheater Coils for Power Plant Boilers 0
Product Functions of Superheater and Reheater
Superheater
  • In a thermal power plant, the superheater's job is crucial. It gets rid of the remaining 1 to 2% moisture in the saturated steam leaving the boiler and cranks up its temperature way above the saturation point. This makes the steam more powerful and efficient.
  • Superheating boosts the overall efficiency of the power generation cycle and prevents excessive condensation in the turbine's final stages, protecting turbine blades from damage.
  • The superheater uses heat from the furnace's combustion gases to dry out the steam completely and then superheats it for efficient power production.
  • Designed with multiple tube circuits running side by side, featuring return bends and headers for even steam distribution and maximum heat transfer.
Reheater
  • Reheaters reheat steam that's already expanded in the turbine, maintaining steam dryness through the turbine's last stage for better performance and less component wear.
  • Located in utility boilers, typically before or after the convective superheater. Modern high-pressure boilers feature two-part reheaters.
  • The primary section starts reheating in the convective zone, while the secondary section at the furnace exit brings steam to optimal temperature.
  • Designed similarly to superheaters for high-temperature operation and efficient heat transfer.
  • While output temperatures match superheaters, reheaters operate at only 20-25% of superheater pressure, allowing cost-effective use of lower-grade steel alloys.
Manufacturing and acceptance criteria of Superheater and Reheater
  1. JB/T1611 "Technical specification for manufacturing of boiler pipes."
  2. JB/T1612 "Boiler pressure test technical conditions."
  3. JB/T1613 "Technical specification for welding of pressure parts of boiler."
  4. JB/T1615 "Technical specification for painting and packing of boiler."
  5. JB/T3375 "Rules for receiving acceptance of materials for boiler construction."
Details of Superheater and Reheater
Material composition Carbon steel, alloy steel or heat-resistant steel, collection boxes and other supporting material. Tubes are customized types of specifications.
Design pattern Vertical or horizontal layout.
Advantages Beautiful appearance, size accuracy, first-class bending and welding technology, first-class detection equipment.
Type Comparison
Pendant-type
  • Firm structural support
  • Flow blockage by condensed steam
  • Needs slow restart to purge accumulated water
  • Supported from above
Inverted-type
  • Proper drainage of condensed steam
  • Lacks structural rigidity in high speed gas flow
  • Supported from below
Horizontal-type
  • Proper drainage
  • Good structural rigidity
  • Mainly convective type, not viewing flame directly
  • Supported in vertical gas ducts parallel to main furnace
products
PRODUCTS DETAILS
T91 T92 Superheater and Reheater Coils for Power Plant Boilers
MOQ: 1 set / 10tons
Price: Negotiable
Standard Packaging: Seaworthy packing
Delivery Period: 50 ~ 100 Days
Payment Method: L/C, T/T, Western Union
Supply Capacity: 1500 Tons / Month
Detail Information
Place of Origin
China
Brand Name
HD BOILER
Certification
ISO9001 , SGS , TUV , ASME , EN
Model Number
Superheater and Reheater
Material:
T91 / T92
Welding Material:
Nickel Base
Product Name:
Superheater And Reheater Coils
Color:
Customized
Application:
Power Plant Boiler,Heat Recovery, Industry
Pressure:
Low/High Pressure
Minimum Order Quantity:
1 set / 10tons
Price:
Negotiable
Packaging Details:
Seaworthy packing
Delivery Time:
50 ~ 100 Days
Payment Terms:
L/C, T/T, Western Union
Supply Ability:
1500 Tons / Month
Highlight

T91 T92 superheater coils

,

power plant boiler reheater coils

,

superheater and reheater with warranty

Product Description
Heat Transfer Design Function Superheater And Reheater Thermal Power Plants
Attribute Value
Material T91 / T92
Welding material Nickel base
Product Name Superheater and Reheater Coils
Color Customized
Application Power Plant Boiler, Heat Recovery, Industry
Pressure Low/High Pressure
Customized Power Plant Solutions SA192 Serpentine Superheater And Reheater Parts
What materials are commonly used for superheaters and reheaters?

Alloy steels (e.g., chrome-molybdenum) for high-temperature resistance.

Product Display
T91 T92 Superheater and Reheater Coils for Power Plant Boilers 0
Product Functions of Superheater and Reheater
Superheater
  • In a thermal power plant, the superheater's job is crucial. It gets rid of the remaining 1 to 2% moisture in the saturated steam leaving the boiler and cranks up its temperature way above the saturation point. This makes the steam more powerful and efficient.
  • Superheating boosts the overall efficiency of the power generation cycle and prevents excessive condensation in the turbine's final stages, protecting turbine blades from damage.
  • The superheater uses heat from the furnace's combustion gases to dry out the steam completely and then superheats it for efficient power production.
  • Designed with multiple tube circuits running side by side, featuring return bends and headers for even steam distribution and maximum heat transfer.
Reheater
  • Reheaters reheat steam that's already expanded in the turbine, maintaining steam dryness through the turbine's last stage for better performance and less component wear.
  • Located in utility boilers, typically before or after the convective superheater. Modern high-pressure boilers feature two-part reheaters.
  • The primary section starts reheating in the convective zone, while the secondary section at the furnace exit brings steam to optimal temperature.
  • Designed similarly to superheaters for high-temperature operation and efficient heat transfer.
  • While output temperatures match superheaters, reheaters operate at only 20-25% of superheater pressure, allowing cost-effective use of lower-grade steel alloys.
Manufacturing and acceptance criteria of Superheater and Reheater
  1. JB/T1611 "Technical specification for manufacturing of boiler pipes."
  2. JB/T1612 "Boiler pressure test technical conditions."
  3. JB/T1613 "Technical specification for welding of pressure parts of boiler."
  4. JB/T1615 "Technical specification for painting and packing of boiler."
  5. JB/T3375 "Rules for receiving acceptance of materials for boiler construction."
Details of Superheater and Reheater
Material composition Carbon steel, alloy steel or heat-resistant steel, collection boxes and other supporting material. Tubes are customized types of specifications.
Design pattern Vertical or horizontal layout.
Advantages Beautiful appearance, size accuracy, first-class bending and welding technology, first-class detection equipment.
Type Comparison
Pendant-type
  • Firm structural support
  • Flow blockage by condensed steam
  • Needs slow restart to purge accumulated water
  • Supported from above
Inverted-type
  • Proper drainage of condensed steam
  • Lacks structural rigidity in high speed gas flow
  • Supported from below
Horizontal-type
  • Proper drainage
  • Good structural rigidity
  • Mainly convective type, not viewing flame directly
  • Supported in vertical gas ducts parallel to main furnace
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