Flexible condensing or back-pressure steam turbine

We offer standard steam turbine generator sets including boilers, generators, oil systems, piping and instrumentation as well as control systems. Standard kits can be extended to condensers, condensing units or preheating systems. With a reliable and flex

  • 116+ MW

    simple-cycle output
  • Up to 44.2%

    net efficiency
  • 99.6%/96.7%

    reliability/availability
  • 8 min.

    start time
  • <30 min.

    combined-cycle start-up time
Proven and tested performance

Characteristics and advantages of back pressure steam turbine

Back-pressure steam turbines have the advantages of high efficiency, economy and environmental protection in combined heat and power generation and industrial heating, and are suitable for occasions where simultaneous power generation and heating are requ

World-class performance and dependability

The performance of steam turbine is mainly reflected in efficiency, power output, steam consumption rate, speed and load adaptability. Efficiency is a key index to measure the conversion of thermal energy into mechanical energy, which is affected by design, manufacturing and operating conditions. The power output is related to steam flow, pressure and temperature; The lower the steam consumption rate, the higher the efficiency; The speed should be matched with the generator and other equipment; Load adaptability reflects its stable operating ability under different loads. In order to improve the performance, it can be achieved by optimizing the design, selecting high-quality materials, strict manufacturing process, regular maintenance and intelligent monitoring.

Leading fuel flexibility

Multi-fuel adaptation: can use natural gas, coal, biomass, refuse derived fuel (RDF) and other fuels, designed to support rapid fuel switching, adapt to fuel supply changes, can choose the most economical fuel according to the market price, reduce operating costs. The fuel flexibility of backpressure steam turbines gives them significant advantages in terms of cost control, energy security and environmental compliance, suitable for the variable energy market and stringent environmental requirements. The fuel flexibility of backpressure steam turbines gives them significant advantages in terms of cost control, energy security and environmental compliance, suitable for the variable energy market and stringent environmental requirements.

Easy installation

From contract signing to commercial operation, standardized architecture and pre-assembled packaging with accessories shorten the lead time. From contract signing to commercial operation, standardized architecture and pre-assembled packaging with accessories shorten the lead time.

Built for anywhere

Steam turbines are the core equipment of thermal power plants, nuclear power plants and renewable energy generation (such as biomass energy, geothermal energy), which can efficiently convert thermal energy into electricity to meet large-scale power needs. Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.

Proven and tested performance

Characteristics and advantages of back pressure steam turbine

Back-pressure steam turbines have the advantages of high efficiency, economy and environmental protection in combined heat and power generation and industrial heating, and are suitable for occasions where simultaneous power generation and heating are requ

World-class performance and dependability

The performance of steam turbine is mainly reflected in efficiency, power output, steam consumption rate, speed and load adaptability. Efficiency is a key index to measure the conversion of thermal energy into mechanical energy, which is affected by design, manufacturing and operating conditions. The power output is related to steam flow, pressure and temperature; The lower the steam consumption rate, the higher the efficiency; The speed should be matched with the generator and other equipment; Load adaptability reflects its stable operating ability under different loads. In order to improve the performance, it can be achieved by optimizing the design, selecting high-quality materials, strict manufacturing process, regular maintenance and intelligent monitoring.

Leading fuel flexibility

Multi-fuel adaptation: can use natural gas, coal, biomass, refuse derived fuel (RDF) and other fuels, designed to support rapid fuel switching, adapt to fuel supply changes, can choose the most economical fuel according to the market price, reduce operating costs. The fuel flexibility of backpressure steam turbines gives them significant advantages in terms of cost control, energy security and environmental compliance, suitable for the variable energy market and stringent environmental requirements. The fuel flexibility of backpressure steam turbines gives them significant advantages in terms of cost control, energy security and environmental compliance, suitable for the variable energy market and stringent environmental requirements.

Easy installation

From contract signing to commercial operation, standardized architecture and pre-assembled packaging with accessories shorten the lead time. From contract signing to commercial operation, standardized architecture and pre-assembled packaging with accessories shorten the lead time.

Built for anywhere

Steam turbines are the core equipment of thermal power plants, nuclear power plants and renewable energy generation (such as biomass energy, geothermal energy), which can efficiently convert thermal energy into electricity to meet large-scale power needs. Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.Steam turbines can be adapted to extreme environments, such as polar regions, deserts or offshore platforms, to provide a reliable power supply for remote areas or special facilities.

Specifications

Reliable power for a variety of applications

Want to know more about steam turbines? Take a look at the product manual.

Specifications shown are for 50 Hz and 60 Hz.

  • 6B
  • Net output (MW)70
  • Net heat rate (Btu/kWh, LHV)6578
  • Net heat rate (kJ/kWh, LHV)6940
  • Net efficiency (%, LHV)51.9%
  • Ramp Rate (MW/minute)20
  • Startup Time (RR Hot, Minutes)30
  • 2
  • 3

Steam turbines can be adapted to a variety of unconventional gas or liquid fuels, including blends with more than 90% hydrogen.

Note: All ratings are based on ISO conditions and fuels. Actual performance will vary depending on project conditions and fuel.

Region in focus

Looking to future-proof your B & E fleet?

GE has solutions that help address the changing energy landscape. Upgrade to keep your fleet relevant today, and in the future.

Consult more >
Region in focus

Looking to future-proof your B & E fleet?

GE has solutions that help address the changing energy landscape. Upgrade to keep your fleet relevant today, and in the future.

Consult more >

Customer case

Project case

A new way to lower emissions

  • 180 MW

    power output

  • 1,650

    companies call Jababeka home

Jababeka Industrial Park was established in 1989 as "Indonesia's first modern eco-industrial park". Early growth was limited by a limited supply of reliable electricity. The property turned to independent power producer pt Cikarang Listrindo for a new

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