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HGP direct-fired air heater

Non-pressurised heater that mixes flame gases with clean air and sends hot gas of up to 1200 °C straight to the process

Boilers and Equipment

TSB Energy · HGP

  • ≤ 21 000 kW
  • ≤ 1200 °C
  • Turndown 20:1
  • Gas · Oil

In the HGP, clean air from the supply fan sweeps turbulently over baffles and guides on the outside of the combustion chamber, cooling the chamber while it warms up itself. At the chamber outlet it mixes with the flame and flue gases and goes straight to the process as hot gas. The heater is non-pressurised and can be built horizontally or vertically. TSB supplies the HGP for diesel, fuel oil, natural gas, LPG, LNG or biogas, with a heat output of up to 21 000 kW (18 000 000 kcal/h) and gas temperatures of up to 1200 °C.

Burner and driven clean-air fan work together under PID control: modulation sets the heat input over a range of up to 20:1 and holds the process air outlet temperature fully proportional. Heating begins 10–15 seconds after start-up, and since no liquid carries the heat, there is no water treatment, waste liquid, freezing or leakage to deal with. The heater can sit upstream or downstream of the process air fan under positive or negative pressure, and its generous combustion chamber suits heavy oils. With clean combustion, NOx stays below 70 mg/Nm³ on gas and below 150 mg/Nm³ on liquid fuel; with a suitable burner it can fire up to 100 % hydrogen.

The front door has three insulation layers — Hycast SS alumina-enriched refractory concrete, ceramic fibre blanket and ceramic paper — keeping it safe to touch. The combustion chamber is AISI310S and AISI253 high-temperature stainless sheet, the shell P355GH boiler plate or AISI304 stainless sheet, and the outer wall carries 100 mm of high-density insulation. Where needed, cleaning and inspection doors, condensate drains and water-resistant gaskets are fitted. The PLC watches the air flow pressure switch, outlet temperature protection and surface temperatures and shares data via Modbus, Modbus TCP/IP or Profinet. Design follows AD 2000 and ASME Section VIII Div. 1.

HGP direct-fired air heater
HGP direct-fired air heater 1HGP direct-fired air heater 2HGP direct-fired air heater 3HGP direct-fired air heater 4HGP direct-fired air heater 5
Benefits

HGP direct-fired air heater

  • Heating begins 10–15 seconds after start-up, with no standby or preheating losses
  • No heat-carrying liquid: no water treatment, waste liquid, freezing or leakage
  • Non-pressurised, closed-circuit operation with no pressure-vessel risk
  • Heat input modulated over up to 20:1 with proportional outlet temperature control
  • Fuel flexibility: diesel, fuel oil, natural gas, LPG, LNG, biogas; up to 100 % hydrogen with a suitable burner
  • Low NOx with clean combustion: below 70 mg/Nm³ on gas and 150 mg/Nm³ on liquid fuel
  • Lower installation cost and less space than indirect heating methods
  • Horizontal or vertical design, suited to dusty heavy-industry environments
Modules

HGP direct-fired air heater

Burner

Modulating burner fully matched to the HGP for gas or liquid fuel. Burner modulation and the clean-air fan drive are controlled together by PID according to process demand. With a suitable burner, up to 100 % hydrogen can be fired.

Clean-air fan

Sized to each application's flow rate and back pressure, it keeps the film temperature on the heating surfaces within safe limits. Redesigned air guides raise the air velocity around the combustion chamber and lower the back pressure, so a smaller fan motor is sufficient.

HGP

Key specifications

SpecificationHGP
Thermal capacity≤ 21 000 kW (≤ 18 000 000 kcal/h)
Operating temperature≤ 1200 °C
Fuel typesNatural gas, LPG, LNG, biogas, diesel, heavy fuel oil, H₂ (up to 100 % with a suitable burner)
Turndown ratio≤ 20:1
Time to heat after start-up10 … 15 s
NOx emissionsClean combustion: < 70 mg/Nm³ (gas firing) · < 150 mg/Nm³ (oil firing)
MaterialShell and covers: P355GH / AISI304 · combustion chamber: AISI310S / AISI253
InterfacesModbus · Modbus TCP/IP · Profinet

Approvals and standards

  • AD 2000 — pressure vessel code (design and manufacture)
  • TRD — German technical rules for steam boilers
  • ASME VIII Div. 1 — pressure vessels (design and manufacture)

Accessories

  • Recuperator heating the combustion air with flue gas
  • Firing options for two fuels or fuel mixtures
  • Safety temperature sensors and flow sensors
  • Air ducts
  • PLC supporting communication protocols such as Modbus and Profibus

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