GPB180D
0Vol%
Type: L20A
Electrical power18.50 MWe
Fuel consumption53.89 MWe
Electrical efficiency34.3 %
Exhaust gas mass flow59.8 kg/s
Exhaust gas temperature542 °C
Generator voltage10.5 kV
Saturated steam output at 8 bar(g)37.0 t/h
Emissions NOx: 15 ppm
CO2: 25 ppm

Performance under ISO conditions w/o duckt losses at Generator Terminal.

GPB180D-H2
0 – 30Vol%
Type: L20A
Electrical power18.34 MWe
Fuel consumption53.08 MWe
Electrical efficiency34.6 %
Exhaust gas mass flow59.7 kg/s
Exhaust gas temperature531 °C
Generator voltage10.5 kV
Saturated steam output at 8 bar(g)37.0 t/h
NOx reduction processDLE
Emissions NOx: 15 ppm
CO2: 25 ppm

Performance at 15°C, 60% RH, at Generator Terminal, Inlet Pressure Loss 0.0 kPa, Exhaust Pressure Loss 0.0 kPa. Performance data valid for: 30% H2 / 70% Natural Gas.

 

Hydrogen Technology for Gas Turbines
DLE for natural gas
Burner configuration:DLE for natural gas
NOx-reduction:„Dry"
H2-content:0 – 30 Vol%
To technology
GPB180-H2
0 – 100Vol%
Type: L20A
Electrical power20.15 MWe
Fuel consumption59.51 MWe
Electrical efficiency33.9 %
Exhaust gas mass flow60.6 kg/s
Exhaust gas temperature520 °C
Generator voltage10.5 kV
Saturated steam output at 8 bar(g)37,0 t/h
NOx reduction processWater injection
Emissions NOx: on request
CO2: 0.0 %

Performance at 15°C, 60% RH, at Generator Terminal, Inlet Pressure Loss 0.0 kPa, Exhaust Pressure Loss 0.0 kPa. Performance data valid for: 100% H2.

 

Hydrogen Technology for Gas Turbines
Diffusion flame
Burner configuration:Diffusion flame
NOx-reduction:„Wet" water/steam
H2-content:0 – 100 Vol%
To technology

Full-Lifecycle-Support

Service expertise directly from the manufacturer

We support your plant throughout its entire life cycle. With reliable support, fast response times, and maximum operational reliability, we ensure your energy performance in the long term.

About the service

Reference project

GPB180D – Powerful energy for public utilities

The GPB180D delivers high electrical power for public utility grids and makes a decisive contribution to grid stability. It is optimized for reliable continuous operation and high economic efficiency.