LM2500 DLE Gas Turbine
Gas Turbine
Also known as:
Turbine, Combustion Turbine



LM2500 DLE Gas Turbine
Gas Turbine
Also known as:
Turbine, Combustion TurbineBuy
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52 WeeksNote:
The LM2500 DLE Gas Turbine incorporates advanced dual-fuel Dry Low Emissions (DLE) technology, designed for power generation, offering high efficiency and reliability.Sign in
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Executive Summary
The LM2500 DLE Gas Turbine is a reliable, low-emissions solution for flexible power generation, offering dual-fuel Dry Low Emissions (DLE) capability. It achieves 15 ppm NOx while maintaining high thermal efficiency and fast response times. Especially desirable when emissions are regulated and water use is restricted.
Its dual-fuel capability, rapid start-up, and compact, open design support easier maintenance and quicker deployment—making it ideal for power producers, industrial plants, and marine operators needing clean, efficient, and responsive energy solutions.
Technical Specifications
Power | 25.06 MW |
Heat rate LHV | 9,204 Btu/kW-hr |
Exhaust gas flow | 152.9 lb/s (69.4 kg/s) |
Exhaust gas temperature | 1,051°F (566°C) |
Power turbine speed | 3600 rpm |
Inlet air flow | 152.9 lb/s (69.4 kg/s) |
Output | 33,600 shp |
High Pressure Compressor | 16-stage |
High Pressure Turbine | 2-stage |
Power Turbine | 6-stage free |
Features and Benefits
- Achieves NOx emissions as low as 15 ppm without water or steam injection
- Ideal for arid or water-scarce regions
- Power density
- Shock-qualified via barge test
- Full enclosure for optimal noise and thermal protection
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Detailed Description
The LM2500 DLE Gas Turbine is an advanced power generation unit designed to deliver high efficiency while significantly reducing emissions. Utilizing cutting-edge Dry Low Emissions (DLE) technology, it precisely controls fuel and air mixing to minimize nitrogen oxide (NOx) emissions.
The LM2500 DLE utilizes a single-rotor gas generator with a 16-stage compressor and a two-stage high-pressure turbine, coupled with cutting-edge DLE combustion technology to reduce nitrogen oxide emissions. It supports dual-fuel operation on a wide variety of fuels, including natural gas, diesel, aviation fuel, LPG, and even hydrogen blends with concentrations ranging from 5% to 95%. The turbine’s open configuration allows for faster maintenance and quicker engine replacement, minimizing downtime.
Its key benefit is utilizing advanced aeroderivative gas turbine technology with dual-fuel Dry Low Emissions (DLE) capability, achieving ultra-low emissions of just 15 ppm NOx on gas fuel, combined with broad fuel flexibility—making it ideal for meeting strict environmental regulations while providing fast, reliable power for dynamic grid demands.
Engineering Data

