Copyright 2021 Baker Hughes Company. All rights reserved. The information contained in this document is company confidential and proprietary property of Baker Hughes and its affiliates. It is to be used only for the benefit of Baker Hughes and may not be distributed, transmitted, reproduced, altered, or used for any purpose without the express written consent of Baker Hughes.
LM6000PFaeroderivative gas turbine 30-year heritage of proven performance
Copyright 2021 Baker Hughes Company. All rights reserved. The information contained in this document is company confidential and proprietary property of Baker Hughes and its affiliates. It is to be used only for the benefit of Baker Hughes and may not be distributed, transmitted, reproduced, altered, or used for any purpose without the express written consent of Baker Hughes.
2 Copyright 2021 Baker Hughes Company. All rights reserved.
Aeroderivative
Frame
kW
- 20,000 40,000 60,000 80,000 100,000 120,000 140,000
NovaLT5-1
NovaLT12
NovaLT16-2
LM2500/PGT25
LM2500+/PGT25+ Xtend 9ppm
LM2500+/PGT25+
LM2500/PGT25+G4
LM2500/PGT25+G5
LM6000PF
LM6000PC
LM6000PG
LM6000PF+
LM9000
LMS100-PB
LMS100-PB+
Frame 5/1PA
Frame 5/2C
Frame 5/2E
Frame 5/2D
Frame 6
Frame 7EA
Frame 9
Industry leader in gas turbine technology
Industrial
3
LM6000PF
Copyright 2021 Baker Hughes Company. All rights reserved.
Supporting customer projects across applications since 2004
With a long, successful history, the LM6000PF aeroderivative gas turbine combines our latest innovations with the best proven technologies and operating experience from more than 5,000 aircraft engines with over 450 million flight hours, and over 1,300 LM6000 units with 40+ million operating hours in the last 30 years.With 44.5 MW shaft power, this turbine can quickly ramp up and down to match demanding operating requirements. It’s ideal for LNG mechanical drive thanks to startup capability with pressurized LNG compressor, without helper motor assistance.
Key features• Double co-axial shafts for loaded startup capability• Compressor has 5 low-pressure and 14 high-pressure stages for
outstanding efficiency, and adjustable vanes for best operating flexibility
• Well-proven dry low emission (DLE 1.5) combustion system • 2-stage high-pressure turbine and 5-stage low-pressure turbine
with optimized airfoils for high efficiency and reduced CO2 emissions
4
Package
Copyright 2021 Baker Hughes Company. All rights reserved.
Onshore and offshore solutions• Optimized slide-off turbine design
with mini-skid concept for engine swap in less then 24 hours for maximized availability
• Multipoint AVM for lightweight single-lift design and uniformly distributed load
• Remote I/O panel available• Aerosol fire-protection system to
minimize footprint and weight by eliminating interconnecting piping and cables
Offshore single-lift power generation
Onshore mechanical drive
Mini-skid for engine swap
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LM6000PF datasheet
Copyright 2021 Baker Hughes Company. All rights reserved.
Power generation
Power MWe 43.3
Efficiency % 41.2
NOx ppm 15
Exhaust °C 457
Speed rpm 3,600
Capability highlights• Ideal for LNG mechanical drive application thanks to startup
capability with pressurized LNG compressor, without helper motor assistance
• Reduced CO2 emissions thanks to the high simple-cycle efficiency
• Dry low emission (DLE 1.5) technology for less than 25 ppm NOx emissions at 75–100% load
• 40–60 MWI fuel flexibility with more than 10%/min rate of change
• Experienced burning 9% vol H2
Single-lift power generation package
LxWxH m 20x5
Weight ton 280
Main inspections
HGP hr 25,000
Major insp. hr 50,000
Mechanical drive
Power MW 44.1
Efficiency % 41.4
NOx ppm 15
Exhaust °C 463
Speed rpm 3,600
Gas turbine package
LxWxH m 12x4.8
Weight ton 160
DLE technology
Performances @ ISO conditions with natural gas fuel, ambient temperature 15ºC, no inlet or exhaust losses, sea level, 60% relative humidity.Mechanical package dimensions driven equipment excluded.
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Projects
Copyright 2021 Baker Hughes Company. All rights reserved.
Australia
LNG mechanical drive and power generation Offshore power generation
Norwegian Sea