SlideShare a Scribd company logo
1 of 8
Download to read offline
siemens.com/energy/gasturbines
Industrial Gas Turbines
The comprehensive product range from 5 to 50 megawatts
Industrial Power
Scan the
QR code with
the QR code
reader in
your mobile!
2
Meeting your needs, driving your
profitability: Industrial gas turbines
from Siemens
A reliable, environmentally friendly and cost-effective
power supply is a key driver for a profitable and sus-
tainable business. Whether you are an oil and gas com-
pany, an EPC or architect engineer, a power producer
or a power user, we are able to offer gas turbine based
solutions which will exactly meet your needs and
increase your profitability.
Our industrial gas turbine range comprises nine models
with capacities from 5 to 50MW, designed with your prof-
itability in mind. Whatever the application, our gas tur-
bines meet the requirements for efficiency, reliability and
environmental compatibility, giving low life-cycle costs
and the best possible return on investment.
Whether for the production of power and heat, or the
transport of oil and gas, our proven turbines are among
the most practical and economical prime movers.
Dry Low Emission (DLE) combustion is standard through-
out the product range, to minimize NOx emissions and
ensure that our turbines comply with both global and
regional emission regulations. Our leading-edge turbine
technology offers broad fuel flexibility and outstanding
efficiencies for economic fuel consumption and low CO2
emissions.
Our solutions include:
	gas turbine generating sets
	gas turbines for power generation
and mechanical drive applications
	gas turbines for marine applications
	full range of extended scope solutions
for the oil and gas industry
	full range of extended scope solutions
for power producers and users
	power plants
	lifetime service and support packages
3
Industrial gas turbines
The comprehensive Siemens product range from 5 to 50 megawatts
SGT-100
Power generation 5.05MW(e)/5.40MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 30.2%/31.0%
n	 Heat rate: 11,914kJ/kWh (11,292Btu/kWh)/
11,613kJ/kWh (11,007Btu/kWh)
n	 Turbine speed: 17,384rpm
n	 Compressor pressure ratio: 14.0:1/15.6:1
n	 Exhaust gas flow: 19.5kg/s (43.0lb/s)/
20.6kg/s (45.4lb/s)
n	 Exhaust temperature: 545°C (1013°F)/
531°C (988°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 25ppmV
Mechanical drive 5.70MW (7,640bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 32.9%
n	 Heat rate: 10,948kJ/kWh (7,738Btu/bhph)
n	 Turbine speed: 13,000rpm
n	 Compressor pressure ratio: 14.9:1
n	 Exhaust gas flow: 19.7kg/s (43.4lb/s)
n	 Exhaust temperature: 543°C (1,009°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 25ppmV
*No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available
SGT-200
Power generation 6.75MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 31.5%
n	 Heat rate: 11,492kJ/kWh (10,892Btu/kWh)
n	 Turbine speed: 11,053rpm
n	 Compressor pressure ratio: 12.2:1
n	 Exhaust gas flow: 29.3kg/s (64.5lb/s)
n	 Exhaust temperature: 466°C (871°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 25ppmV
Mechanical drive 7.68MW (10,300bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 33.4%
n	 Heat rate: 10,776kJ/kWh (7,616Btu/bhph)
n	 Turbine speed: 10,950rpm
n	 Compressor pressure ratio: 12.3:1
n	 Exhaust gas flow: 29.5kg/s (65.0lb/s)
n	 Exhaust temperature: 493°C (919°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
SGT-300
Power generation 7.90MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 30.6%
n	 Heat rate: 11,773kJ/kWh (11,158Btu/kWh)
n	 Turbine speed: 14,010rpm
n	 Compressor pressure ratio: 13.7:1
n	 Exhaust gas flow: 30.2kg/s (66.6lb/s)
n	 Exhaust temperature: 542°C (1,008°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
Mechanical drive 8.2MW (11,000bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 34.6%
n	 Heat rate: 10,400kJ/kWh (7,350 Btu/bhph)
n	 Turbine speed: 11,500rpm
n	 Compressor pressure ratio: 13.3:1
n	 Exhaust gas flow: 29.0kg/s (63.9lb/s)
n	 Exhaust temperature: 498°C (928°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
4
5
*No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available
SGT-400
Power generation 12.90MW(e)/14.33MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 34.8%/35.4%
n	 Heat rate: 10,355kJ/kWh (9,815Btu/kWh)/
10,178kJ/kWh (9,647Btu/kWh)
n	 Turbine speed: 9,500rpm
n	 Compressor pressure ratio: 16.8:1/18.9:1
n	 Exhaust gas flow: 39.4kg/s (86.8lb/s)/
44.3kg/s (97.7lb/s)
n	 Exhaust temperature: 555°C (1,031°F)/
540°C (1,004°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
Mechanical drive 13.40MW (18,000bhp)/
14.92MW (20,006bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 36.2%/36.8%
n	 Heat rate: 9,943kJ/kWh (7,028Btu/bhph)/
9,774kJ/kWh (6,908Btu/bhph)
n	 Turbine speed: 9,500rpm
n	 Compressor pressure ratio: 16.8:1/18.9:1
n	 Exhaust gas flow: 39.4kg/s (86.8lb/s)/
44.0kg/s (97.0lb/s)
n	 Exhaust temperature: 555°C (1,031°F)/
540°C (1,004°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
SGT-500
Power generation 19.06MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 33.7%
n	 Heat rate: 10,690kJ/kWh (10,132Btu/kWh)
n	 Turbine speed: 3,600rpm
n	 Compressor pressure ratio: 13.0:1
n	 Exhaust gas flow: 97.9kg/s (215.9lb/s)
n	 Exhaust temperature: 369°C (696°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 42ppmV
Mechanical drive 19.30MW (25,881bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 34.2%
n	 Heat rate: 10,530kJ/kWh (7,443Btu/bhph)
n	 Turbine speed: 3,450rpm
n	 Compressor pressure ratio: 13.0:1
n	 Exhaust gas flow: 97.9kg/s (215.9lb/s)
n	 Exhaust temperature: 369°C (696°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 42ppmV
SGT-600
Power generation 24.48MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 33.6%
n	 Heat rate: 10,720kJ/kWh (10,161Btu/kWh)
n	 Turbine speed: 7,700rpm
n	 Compressor pressure ratio: 14.0:1
n	 Exhaust gas flow: 81.3kg/s (179.2lb/s)
n	 Exhaust temperature: 543°C (1,009°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 25ppmV
Mechanical drive 25.24MW (33,847bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 34.6%
n	 Heat rate: 10,390kJ/kWh (7,344Btu/bhph)
n	 Turbine speed: 7,700rpm
n	 Compressor pressure ratio: 14.0:1
n	 Exhaust gas flow: 81.3kg/s (179.2lb/s)
n	 Exhaust temperature: 543°C (1,009°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 25ppmV
6
*No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available
SGT-700
Power generation 32.82MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 37.2%
n	 Heat rate: 9,675kJ/kWh (9,170Btu/kWh)
n	 Turbine speed: 6,500rpm
n	 Compressor pressure ratio: 18.7:1
n	 Exhaust gas flow: 95.0kg/s (209.4lb/s)
n	 Exhaust temperature: 533°C (991°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
Mechanical drive 33.67MW (45,151bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 38.2%
n	 Heat rate: 9,424kJ/kWh (6,661Btu/bhph)
n	 Turbine speed: 6,500rpm
n	 Compressor pressure ratio: 18.7:1
n	 Exhaust gas flow: 95.0kg/s (209.4lb/s)
n	 Exhaust temperature: 533°C (991°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
SGT-750
Power generation 37.03MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 39.5%
n	 Heat rate: 9,120kJ/kWh (8,644Btu/kWh)
n	 Turbine speed: 6,100rpm
n	 Compressor pressure ratio: 23.8:1
n	 Exhaust gas flow: 114.2kg/s (251.8lb/s)
n	 Exhaust temperature: 459°C (858°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
Mechanical drive 38.19MW (51,213bhp)
n	 Fuel: Natural gas*
n	 Efficiency: 40.7%
n	 Heat rate: 8,840kJ/kWh (6,248Btu/bhph)
n	 Turbine speed: 3,050 –6,405rpm
n	 Compressor pressure ratio: 23.8:1
n	 Exhaust gas flow: 114.2kg/s (251.8lb/s)
n	 Exhaust temperature: 459°C (858°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
SGT-800
Power generation 47.50MW(e)/50.50MW(e)
n	 Fuel: Natural gas*
n	 Frequency: 50/60Hz
n	 Electrical efficiency: 37.7%/38.3%
n	 Heat rate: 9,557kJ/kWh (9,058Btu/kWh)/
9,407kJ/kWh (8,916Btu/kWh)
n	 Turbine speed: 6,608rpm
n	 Compressor pressure ratio: 20.4:1/21.1:1
n	 Exhaust gas flow: 132.8kg/s (292.8lb/s)/
134.2kg/s (295.8lb/s)
n	 Exhaust temperature: 541°C (1,006°F)/
553°C (1,027°F)
n	 NOx emissions (with DLE, corrected to
15% O2 dry): ≤ 15ppmV
7
Wingas compressor station, Eischleben, Germany: Two Siemens
compressor trains, each powered by a SGT-700 gas turbine,
boosting the pipeline pressure for Natural gas* transport.
William Grant  Sons distillery, Girvan, Scotland, UK: A SGT-100 gas
turbine cogeneration package provides heat and power.
Göteborg Energi AB, Rya, Gothenburg: Three SGT-800 gas turbines
at the combined heat and power plant provide electricity and heating
to the city of Gothenburg.
Sasol Technology (Pty) Ltd, South Africa: The 13.4MW SGT-400 gas
turbine is the key component to the two pipeline compressor sets
installed at the Komatipoort compressor station.
Power generation and
industrial applications
Independent power producers, utilities and
municipalities:
	Simple cycle and combined cycle power plants
for base load, standby power and peak lopping
	Cogeneration for industrial plants with high
heat load and district heating schemes
Power users:
	Chemical plants and pharmaceuticals
	Food and beverage plants
	Automotive plants, mining, heavy industry
	Pulp and paper, textiles
	Hospitals, universities and other building
complexes
	Marine propulsion, other process and
manufacturing industries
Oil and gas industry
Upstream – onshore and offshore production,
fixed and floating:
	Prime movers for water injection and crude oil
pumping, gas lift, gas/oil separation
	Well depletion/wellhead boosting, natural gas
and sour gas injection
	Gas gathering and export gas compression,
refrigeration compression for gas-processing
plant
	Power generation and power supply
Midstream – pipelines, storage and LNG:
	Gas turbine driven compressors and pumps,
e.g. for high-pressure gas transmission pipelines
and oil pumping
	Power generation and refrigerant compression
for liquefied Natural gas* (LNG)
Downstream – refineries, petrochemicals, GTL:
	Gas to liquids (GTL) – power generation
	Refinery – power generation
7
Published by and copyright © 2013:
Siemens AG
Energy Sector
Power Generation
Freyeslebenstrasse 1
91058 Erlangen, Germany
Siemens AG
Energy Sector, Power Generation
Gas Turbines  Generators
10548 Berlin, Germany
Siemens Industrial Turbomachinery AB
Slottsvaegen
SE-612 83 Finspang, Sweden
Siemens Industrial Turbomachinery Ltd.
Ruston House, Waterside South
Lincoln LN5 7FD
United Kingdom
For more information, please contact
our Customer Support Center.
Phone: +49 180 524 70 00
Fax: +49 180 524 24 71
(Charges depending on provider)
E-mail: support.energy@siemens.com
Power Generation Division
Order No. E50001-G430-A100-V6-4A00
Printed in Germany
Dispo 34806, K12 130084, c4bs 7447, P WS 1213
Printed on elementary chlorine-free bleached paper.
All rights reserved.
Trademarks mentioned in this document
are the property of Siemens AG, its affiliates,
or their respective owners.
Subject to change without prior notice.
The information in this document contains general
descriptions of the technical options available, which
may not apply in all cases. The required technical
options should therefore be specifi ed in the contact.

More Related Content

What's hot

4 na data sheet - 2.2019
4 na   data sheet - 2.20194 na   data sheet - 2.2019
4 na data sheet - 2.2019FrankEasel
 
Desirable as run information system for energy efficiency of utility clas...
Desirable as run information system  for energy efficiency  of  utility  clas...Desirable as run information system  for energy efficiency  of  utility  clas...
Desirable as run information system for energy efficiency of utility clas...D.Pawan Kumar
 
Compresseur hp heatpump
Compresseur hp heatpumpCompresseur hp heatpump
Compresseur hp heatpumpEUROPAGES
 
Power plant performance_efficiency
Power plant performance_efficiencyPower plant performance_efficiency
Power plant performance_efficiencyKeyur Patel
 
Modeling and Valuing Cogeneration with AURORAxmp
Modeling and Valuing Cogeneration with AURORAxmpModeling and Valuing Cogeneration with AURORAxmp
Modeling and Valuing Cogeneration with AURORAxmpEPIS Inc
 
Condition Monitoring of electrical machine
Condition Monitoring of electrical machine Condition Monitoring of electrical machine
Condition Monitoring of electrical machine Molla Morshad
 
Diethyl Ether (DEE): Energy Balance
Diethyl Ether (DEE): Energy BalanceDiethyl Ether (DEE): Energy Balance
Diethyl Ether (DEE): Energy BalancePratik Patel
 
Overview of powertrain
Overview of powertrainOverview of powertrain
Overview of powertrainbharibabu
 
New ton presentation_c
New ton  presentation_cNew ton  presentation_c
New ton presentation_cEUROPAGES
 
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008rhysemo
 
Sustainable polymers from CO2 and water with low-carbon electricity
Sustainable polymers from CO2 and water with low-carbon electricitySustainable polymers from CO2 and water with low-carbon electricity
Sustainable polymers from CO2 and water with low-carbon electricityIlkka Hannula
 
New high temperature heat pumps in district heating systems
New high temperature heat pumps in district heating systemsNew high temperature heat pumps in district heating systems
New high temperature heat pumps in district heating systemsUNEP OzonAction
 
MET 211 Engine testing equations
MET 211 Engine testing equationsMET 211 Engine testing equations
MET 211 Engine testing equationsIbrahim AboKhalil
 
210 mw turbine cycle heat rate
210 mw turbine cycle heat rate210 mw turbine cycle heat rate
210 mw turbine cycle heat rateManohar Tatwawadi
 
Smith sol7
Smith sol7Smith sol7
Smith sol7carlos
 
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gas
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gasIB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gas
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gasLawrence kok
 

What's hot (20)

4 na data sheet - 2.2019
4 na   data sheet - 2.20194 na   data sheet - 2.2019
4 na data sheet - 2.2019
 
Desirable as run information system for energy efficiency of utility clas...
Desirable as run information system  for energy efficiency  of  utility  clas...Desirable as run information system  for energy efficiency  of  utility  clas...
Desirable as run information system for energy efficiency of utility clas...
 
Compresseur hp heatpump
Compresseur hp heatpumpCompresseur hp heatpump
Compresseur hp heatpump
 
Power plant performance_efficiency
Power plant performance_efficiencyPower plant performance_efficiency
Power plant performance_efficiency
 
Modeling and Valuing Cogeneration with AURORAxmp
Modeling and Valuing Cogeneration with AURORAxmpModeling and Valuing Cogeneration with AURORAxmp
Modeling and Valuing Cogeneration with AURORAxmp
 
linkedin
linkedinlinkedin
linkedin
 
CHP Proposal
CHP ProposalCHP Proposal
CHP Proposal
 
Condition Monitoring of electrical machine
Condition Monitoring of electrical machine Condition Monitoring of electrical machine
Condition Monitoring of electrical machine
 
Diethyl Ether (DEE): Energy Balance
Diethyl Ether (DEE): Energy BalanceDiethyl Ether (DEE): Energy Balance
Diethyl Ether (DEE): Energy Balance
 
Overview of powertrain
Overview of powertrainOverview of powertrain
Overview of powertrain
 
New ton presentation_c
New ton  presentation_cNew ton  presentation_c
New ton presentation_c
 
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008
Airah Natural Refrigerants Special Interest Group Sydney 30 October 2008
 
Sustainable polymers from CO2 and water with low-carbon electricity
Sustainable polymers from CO2 and water with low-carbon electricitySustainable polymers from CO2 and water with low-carbon electricity
Sustainable polymers from CO2 and water with low-carbon electricity
 
New high temperature heat pumps in district heating systems
New high temperature heat pumps in district heating systemsNew high temperature heat pumps in district heating systems
New high temperature heat pumps in district heating systems
 
MET 211 Engine testing equations
MET 211 Engine testing equationsMET 211 Engine testing equations
MET 211 Engine testing equations
 
Ch.6
Ch.6Ch.6
Ch.6
 
210 mw turbine cycle heat rate
210 mw turbine cycle heat rate210 mw turbine cycle heat rate
210 mw turbine cycle heat rate
 
Smith sol7
Smith sol7Smith sol7
Smith sol7
 
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gas
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gasIB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gas
IB Chemistry Ideal Gas Equation, Kinetic Theory and RMM determination of gas
 
Chp Job Reference(1009)
Chp Job Reference(1009)Chp Job Reference(1009)
Chp Job Reference(1009)
 

Viewers also liked

PID Control Basics
PID Control BasicsPID Control Basics
PID Control BasicsYokogawa1
 
YOKOGAWA CENTUM CS 3000 R3
YOKOGAWA CENTUM CS 3000 R3YOKOGAWA CENTUM CS 3000 R3
YOKOGAWA CENTUM CS 3000 R3Rehan Fazal
 
Gas turbine cooling system by ahmed shoshan & alaa el-adl
Gas turbine cooling system by ahmed shoshan & alaa el-adlGas turbine cooling system by ahmed shoshan & alaa el-adl
Gas turbine cooling system by ahmed shoshan & alaa el-adlAhmed Shoshan
 
236407565 gas-turbine-notes
236407565 gas-turbine-notes236407565 gas-turbine-notes
236407565 gas-turbine-notesmanojg1990
 
Gas Turbine Training Power Point -Sample
Gas Turbine Training Power Point -SampleGas Turbine Training Power Point -Sample
Gas Turbine Training Power Point -SampleAli Rafiei
 
Gas Turbine Operation
Gas Turbine OperationGas Turbine Operation
Gas Turbine OperationMalik M. N.
 
Gas Turbine Theory - Principle of Operation and Construction
Gas Turbine Theory  - Principle of Operation and ConstructionGas Turbine Theory  - Principle of Operation and Construction
Gas Turbine Theory - Principle of Operation and ConstructionSahyog Shishodia
 

Viewers also liked (7)

PID Control Basics
PID Control BasicsPID Control Basics
PID Control Basics
 
YOKOGAWA CENTUM CS 3000 R3
YOKOGAWA CENTUM CS 3000 R3YOKOGAWA CENTUM CS 3000 R3
YOKOGAWA CENTUM CS 3000 R3
 
Gas turbine cooling system by ahmed shoshan & alaa el-adl
Gas turbine cooling system by ahmed shoshan & alaa el-adlGas turbine cooling system by ahmed shoshan & alaa el-adl
Gas turbine cooling system by ahmed shoshan & alaa el-adl
 
236407565 gas-turbine-notes
236407565 gas-turbine-notes236407565 gas-turbine-notes
236407565 gas-turbine-notes
 
Gas Turbine Training Power Point -Sample
Gas Turbine Training Power Point -SampleGas Turbine Training Power Point -Sample
Gas Turbine Training Power Point -Sample
 
Gas Turbine Operation
Gas Turbine OperationGas Turbine Operation
Gas Turbine Operation
 
Gas Turbine Theory - Principle of Operation and Construction
Gas Turbine Theory  - Principle of Operation and ConstructionGas Turbine Theory  - Principle of Operation and Construction
Gas Turbine Theory - Principle of Operation and Construction
 

Similar to Industrial_Gas_Turbines_EN

GE Jebachers Gas Engine JGS620 technical specifications
GE Jebachers Gas Engine JGS620 technical specificationsGE Jebachers Gas Engine JGS620 technical specifications
GE Jebachers Gas Engine JGS620 technical specificationsMuhammad Asif Siddiqui
 
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...Centro Studi Galileo
 
71000067_Flex Turbine GT333S Spec Sheet
71000067_Flex Turbine GT333S Spec Sheet71000067_Flex Turbine GT333S Spec Sheet
71000067_Flex Turbine GT333S Spec SheetMark MacLean
 
Datasheet SpruceTrigen 75 NG 50Hz
Datasheet SpruceTrigen 75 NG 50HzDatasheet SpruceTrigen 75 NG 50Hz
Datasheet SpruceTrigen 75 NG 50HzSNGE Heat&Power
 
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...Global CCS Institute
 
Water use of thermal power plants equipped with CO2 capture systems
Water use of thermal power plants equipped with CO2 capture systemsWater use of thermal power plants equipped with CO2 capture systems
Water use of thermal power plants equipped with CO2 capture systemsGlobal CCS Institute
 
Datasheet SpruceTrigen 46 NG 60Hz
Datasheet SpruceTrigen 46 NG 60HzDatasheet SpruceTrigen 46 NG 60Hz
Datasheet SpruceTrigen 46 NG 60HzSNGE Heat&Power
 
1 palmer international consulting_presentation_artc_singapore_2014 (10)
1 palmer international consulting_presentation_artc_singapore_2014 (10)1 palmer international consulting_presentation_artc_singapore_2014 (10)
1 palmer international consulting_presentation_artc_singapore_2014 (10)pipllp
 
Ppt paper 3 plasma energy technology
Ppt paper 3 plasma energy technologyPpt paper 3 plasma energy technology
Ppt paper 3 plasma energy technologytelecommohn
 
Datasheet SpruceTrigen 56 NG 60Hz
Datasheet SpruceTrigen 56 NG 60HzDatasheet SpruceTrigen 56 NG 60Hz
Datasheet SpruceTrigen 56 NG 60HzSNGE Heat&Power
 
Datasheet SpruceTrigen 41 NG 50Hz
Datasheet SpruceTrigen 41 NG 50HzDatasheet SpruceTrigen 41 NG 50Hz
Datasheet SpruceTrigen 41 NG 50HzSNGE Heat&Power
 
Supermarket refrigeration with CO2, heat recovery and ejectors
Supermarket refrigeration with CO2, heat recovery and ejectorsSupermarket refrigeration with CO2, heat recovery and ejectors
Supermarket refrigeration with CO2, heat recovery and ejectorsATMOsphere Conferences & Events
 
ORC ElectraTherm Green Machine - waste heat to power, Power generation
ORC ElectraTherm Green Machine - waste heat to power, Power generationORC ElectraTherm Green Machine - waste heat to power, Power generation
ORC ElectraTherm Green Machine - waste heat to power, Power generationRado Irgl
 
2016.12.14 DryFining Coal Gen presentation FINAL
2016.12.14 DryFining Coal Gen presentation FINAL2016.12.14 DryFining Coal Gen presentation FINAL
2016.12.14 DryFining Coal Gen presentation FINALSandra Broekema
 
Datasheet SpruceTrigen 48 50hz Biogas
Datasheet SpruceTrigen 48 50hz BiogasDatasheet SpruceTrigen 48 50hz Biogas
Datasheet SpruceTrigen 48 50hz BiogasSNGE Heat&Power
 
White - LNG Processing Presentation.ppt
White - LNG Processing Presentation.pptWhite - LNG Processing Presentation.ppt
White - LNG Processing Presentation.pptLemuelGulliver
 
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEAS
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEASWASTE HEAT RECOVERY IN CEMENT PLANTS - IDEAS
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEASKushPatel529832
 

Similar to Industrial_Gas_Turbines_EN (20)

HR.pptx
HR.pptxHR.pptx
HR.pptx
 
One-day workshop on Industrial Heating
One-day workshop on Industrial HeatingOne-day workshop on Industrial Heating
One-day workshop on Industrial Heating
 
GE Jebachers Gas Engine JGS620 technical specifications
GE Jebachers Gas Engine JGS620 technical specificationsGE Jebachers Gas Engine JGS620 technical specifications
GE Jebachers Gas Engine JGS620 technical specifications
 
mel725-37.ppt
mel725-37.pptmel725-37.ppt
mel725-37.ppt
 
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...
XVI CONVEGNO EUROPEO J. Boone - Energy saving 90°C hot water NH3 heat pumps i...
 
71000067_Flex Turbine GT333S Spec Sheet
71000067_Flex Turbine GT333S Spec Sheet71000067_Flex Turbine GT333S Spec Sheet
71000067_Flex Turbine GT333S Spec Sheet
 
Datasheet SpruceTrigen 75 NG 50Hz
Datasheet SpruceTrigen 75 NG 50HzDatasheet SpruceTrigen 75 NG 50Hz
Datasheet SpruceTrigen 75 NG 50Hz
 
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...
CO2 capture within refining: case studies - Rosa Maria Domenichini, Foster Wh...
 
Water use of thermal power plants equipped with CO2 capture systems
Water use of thermal power plants equipped with CO2 capture systemsWater use of thermal power plants equipped with CO2 capture systems
Water use of thermal power plants equipped with CO2 capture systems
 
Datasheet SpruceTrigen 46 NG 60Hz
Datasheet SpruceTrigen 46 NG 60HzDatasheet SpruceTrigen 46 NG 60Hz
Datasheet SpruceTrigen 46 NG 60Hz
 
1 palmer international consulting_presentation_artc_singapore_2014 (10)
1 palmer international consulting_presentation_artc_singapore_2014 (10)1 palmer international consulting_presentation_artc_singapore_2014 (10)
1 palmer international consulting_presentation_artc_singapore_2014 (10)
 
Ppt paper 3 plasma energy technology
Ppt paper 3 plasma energy technologyPpt paper 3 plasma energy technology
Ppt paper 3 plasma energy technology
 
Datasheet SpruceTrigen 56 NG 60Hz
Datasheet SpruceTrigen 56 NG 60HzDatasheet SpruceTrigen 56 NG 60Hz
Datasheet SpruceTrigen 56 NG 60Hz
 
Datasheet SpruceTrigen 41 NG 50Hz
Datasheet SpruceTrigen 41 NG 50HzDatasheet SpruceTrigen 41 NG 50Hz
Datasheet SpruceTrigen 41 NG 50Hz
 
Supermarket refrigeration with CO2, heat recovery and ejectors
Supermarket refrigeration with CO2, heat recovery and ejectorsSupermarket refrigeration with CO2, heat recovery and ejectors
Supermarket refrigeration with CO2, heat recovery and ejectors
 
ORC ElectraTherm Green Machine - waste heat to power, Power generation
ORC ElectraTherm Green Machine - waste heat to power, Power generationORC ElectraTherm Green Machine - waste heat to power, Power generation
ORC ElectraTherm Green Machine - waste heat to power, Power generation
 
2016.12.14 DryFining Coal Gen presentation FINAL
2016.12.14 DryFining Coal Gen presentation FINAL2016.12.14 DryFining Coal Gen presentation FINAL
2016.12.14 DryFining Coal Gen presentation FINAL
 
Datasheet SpruceTrigen 48 50hz Biogas
Datasheet SpruceTrigen 48 50hz BiogasDatasheet SpruceTrigen 48 50hz Biogas
Datasheet SpruceTrigen 48 50hz Biogas
 
White - LNG Processing Presentation.ppt
White - LNG Processing Presentation.pptWhite - LNG Processing Presentation.ppt
White - LNG Processing Presentation.ppt
 
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEAS
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEASWASTE HEAT RECOVERY IN CEMENT PLANTS - IDEAS
WASTE HEAT RECOVERY IN CEMENT PLANTS - IDEAS
 

Industrial_Gas_Turbines_EN

  • 1. siemens.com/energy/gasturbines Industrial Gas Turbines The comprehensive product range from 5 to 50 megawatts Industrial Power Scan the QR code with the QR code reader in your mobile!
  • 2. 2
  • 3. Meeting your needs, driving your profitability: Industrial gas turbines from Siemens A reliable, environmentally friendly and cost-effective power supply is a key driver for a profitable and sus- tainable business. Whether you are an oil and gas com- pany, an EPC or architect engineer, a power producer or a power user, we are able to offer gas turbine based solutions which will exactly meet your needs and increase your profitability. Our industrial gas turbine range comprises nine models with capacities from 5 to 50MW, designed with your prof- itability in mind. Whatever the application, our gas tur- bines meet the requirements for efficiency, reliability and environmental compatibility, giving low life-cycle costs and the best possible return on investment. Whether for the production of power and heat, or the transport of oil and gas, our proven turbines are among the most practical and economical prime movers. Dry Low Emission (DLE) combustion is standard through- out the product range, to minimize NOx emissions and ensure that our turbines comply with both global and regional emission regulations. Our leading-edge turbine technology offers broad fuel flexibility and outstanding efficiencies for economic fuel consumption and low CO2 emissions. Our solutions include: gas turbine generating sets gas turbines for power generation and mechanical drive applications gas turbines for marine applications full range of extended scope solutions for the oil and gas industry full range of extended scope solutions for power producers and users power plants lifetime service and support packages 3
  • 4. Industrial gas turbines The comprehensive Siemens product range from 5 to 50 megawatts SGT-100 Power generation 5.05MW(e)/5.40MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 30.2%/31.0% n Heat rate: 11,914kJ/kWh (11,292Btu/kWh)/ 11,613kJ/kWh (11,007Btu/kWh) n Turbine speed: 17,384rpm n Compressor pressure ratio: 14.0:1/15.6:1 n Exhaust gas flow: 19.5kg/s (43.0lb/s)/ 20.6kg/s (45.4lb/s) n Exhaust temperature: 545°C (1013°F)/ 531°C (988°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 25ppmV Mechanical drive 5.70MW (7,640bhp) n Fuel: Natural gas* n Efficiency: 32.9% n Heat rate: 10,948kJ/kWh (7,738Btu/bhph) n Turbine speed: 13,000rpm n Compressor pressure ratio: 14.9:1 n Exhaust gas flow: 19.7kg/s (43.4lb/s) n Exhaust temperature: 543°C (1,009°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 25ppmV *No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available SGT-200 Power generation 6.75MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 31.5% n Heat rate: 11,492kJ/kWh (10,892Btu/kWh) n Turbine speed: 11,053rpm n Compressor pressure ratio: 12.2:1 n Exhaust gas flow: 29.3kg/s (64.5lb/s) n Exhaust temperature: 466°C (871°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 25ppmV Mechanical drive 7.68MW (10,300bhp) n Fuel: Natural gas* n Efficiency: 33.4% n Heat rate: 10,776kJ/kWh (7,616Btu/bhph) n Turbine speed: 10,950rpm n Compressor pressure ratio: 12.3:1 n Exhaust gas flow: 29.5kg/s (65.0lb/s) n Exhaust temperature: 493°C (919°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV SGT-300 Power generation 7.90MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 30.6% n Heat rate: 11,773kJ/kWh (11,158Btu/kWh) n Turbine speed: 14,010rpm n Compressor pressure ratio: 13.7:1 n Exhaust gas flow: 30.2kg/s (66.6lb/s) n Exhaust temperature: 542°C (1,008°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV Mechanical drive 8.2MW (11,000bhp) n Fuel: Natural gas* n Efficiency: 34.6% n Heat rate: 10,400kJ/kWh (7,350 Btu/bhph) n Turbine speed: 11,500rpm n Compressor pressure ratio: 13.3:1 n Exhaust gas flow: 29.0kg/s (63.9lb/s) n Exhaust temperature: 498°C (928°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV 4
  • 5. 5 *No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available SGT-400 Power generation 12.90MW(e)/14.33MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 34.8%/35.4% n Heat rate: 10,355kJ/kWh (9,815Btu/kWh)/ 10,178kJ/kWh (9,647Btu/kWh) n Turbine speed: 9,500rpm n Compressor pressure ratio: 16.8:1/18.9:1 n Exhaust gas flow: 39.4kg/s (86.8lb/s)/ 44.3kg/s (97.7lb/s) n Exhaust temperature: 555°C (1,031°F)/ 540°C (1,004°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV Mechanical drive 13.40MW (18,000bhp)/ 14.92MW (20,006bhp) n Fuel: Natural gas* n Efficiency: 36.2%/36.8% n Heat rate: 9,943kJ/kWh (7,028Btu/bhph)/ 9,774kJ/kWh (6,908Btu/bhph) n Turbine speed: 9,500rpm n Compressor pressure ratio: 16.8:1/18.9:1 n Exhaust gas flow: 39.4kg/s (86.8lb/s)/ 44.0kg/s (97.0lb/s) n Exhaust temperature: 555°C (1,031°F)/ 540°C (1,004°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV SGT-500 Power generation 19.06MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 33.7% n Heat rate: 10,690kJ/kWh (10,132Btu/kWh) n Turbine speed: 3,600rpm n Compressor pressure ratio: 13.0:1 n Exhaust gas flow: 97.9kg/s (215.9lb/s) n Exhaust temperature: 369°C (696°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 42ppmV Mechanical drive 19.30MW (25,881bhp) n Fuel: Natural gas* n Efficiency: 34.2% n Heat rate: 10,530kJ/kWh (7,443Btu/bhph) n Turbine speed: 3,450rpm n Compressor pressure ratio: 13.0:1 n Exhaust gas flow: 97.9kg/s (215.9lb/s) n Exhaust temperature: 369°C (696°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 42ppmV SGT-600 Power generation 24.48MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 33.6% n Heat rate: 10,720kJ/kWh (10,161Btu/kWh) n Turbine speed: 7,700rpm n Compressor pressure ratio: 14.0:1 n Exhaust gas flow: 81.3kg/s (179.2lb/s) n Exhaust temperature: 543°C (1,009°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 25ppmV Mechanical drive 25.24MW (33,847bhp) n Fuel: Natural gas* n Efficiency: 34.6% n Heat rate: 10,390kJ/kWh (7,344Btu/bhph) n Turbine speed: 7,700rpm n Compressor pressure ratio: 14.0:1 n Exhaust gas flow: 81.3kg/s (179.2lb/s) n Exhaust temperature: 543°C (1,009°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 25ppmV
  • 6. 6 *No intake or exhaust loss; other gaseous, liquid and/or dual fuel options available SGT-700 Power generation 32.82MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 37.2% n Heat rate: 9,675kJ/kWh (9,170Btu/kWh) n Turbine speed: 6,500rpm n Compressor pressure ratio: 18.7:1 n Exhaust gas flow: 95.0kg/s (209.4lb/s) n Exhaust temperature: 533°C (991°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV Mechanical drive 33.67MW (45,151bhp) n Fuel: Natural gas* n Efficiency: 38.2% n Heat rate: 9,424kJ/kWh (6,661Btu/bhph) n Turbine speed: 6,500rpm n Compressor pressure ratio: 18.7:1 n Exhaust gas flow: 95.0kg/s (209.4lb/s) n Exhaust temperature: 533°C (991°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV SGT-750 Power generation 37.03MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 39.5% n Heat rate: 9,120kJ/kWh (8,644Btu/kWh) n Turbine speed: 6,100rpm n Compressor pressure ratio: 23.8:1 n Exhaust gas flow: 114.2kg/s (251.8lb/s) n Exhaust temperature: 459°C (858°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV Mechanical drive 38.19MW (51,213bhp) n Fuel: Natural gas* n Efficiency: 40.7% n Heat rate: 8,840kJ/kWh (6,248Btu/bhph) n Turbine speed: 3,050 –6,405rpm n Compressor pressure ratio: 23.8:1 n Exhaust gas flow: 114.2kg/s (251.8lb/s) n Exhaust temperature: 459°C (858°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV SGT-800 Power generation 47.50MW(e)/50.50MW(e) n Fuel: Natural gas* n Frequency: 50/60Hz n Electrical efficiency: 37.7%/38.3% n Heat rate: 9,557kJ/kWh (9,058Btu/kWh)/ 9,407kJ/kWh (8,916Btu/kWh) n Turbine speed: 6,608rpm n Compressor pressure ratio: 20.4:1/21.1:1 n Exhaust gas flow: 132.8kg/s (292.8lb/s)/ 134.2kg/s (295.8lb/s) n Exhaust temperature: 541°C (1,006°F)/ 553°C (1,027°F) n NOx emissions (with DLE, corrected to 15% O2 dry): ≤ 15ppmV
  • 7. 7 Wingas compressor station, Eischleben, Germany: Two Siemens compressor trains, each powered by a SGT-700 gas turbine, boosting the pipeline pressure for Natural gas* transport. William Grant Sons distillery, Girvan, Scotland, UK: A SGT-100 gas turbine cogeneration package provides heat and power. Göteborg Energi AB, Rya, Gothenburg: Three SGT-800 gas turbines at the combined heat and power plant provide electricity and heating to the city of Gothenburg. Sasol Technology (Pty) Ltd, South Africa: The 13.4MW SGT-400 gas turbine is the key component to the two pipeline compressor sets installed at the Komatipoort compressor station. Power generation and industrial applications Independent power producers, utilities and municipalities: Simple cycle and combined cycle power plants for base load, standby power and peak lopping Cogeneration for industrial plants with high heat load and district heating schemes Power users: Chemical plants and pharmaceuticals Food and beverage plants Automotive plants, mining, heavy industry Pulp and paper, textiles Hospitals, universities and other building complexes Marine propulsion, other process and manufacturing industries Oil and gas industry Upstream – onshore and offshore production, fixed and floating: Prime movers for water injection and crude oil pumping, gas lift, gas/oil separation Well depletion/wellhead boosting, natural gas and sour gas injection Gas gathering and export gas compression, refrigeration compression for gas-processing plant Power generation and power supply Midstream – pipelines, storage and LNG: Gas turbine driven compressors and pumps, e.g. for high-pressure gas transmission pipelines and oil pumping Power generation and refrigerant compression for liquefied Natural gas* (LNG) Downstream – refineries, petrochemicals, GTL: Gas to liquids (GTL) – power generation Refinery – power generation 7
  • 8. Published by and copyright © 2013: Siemens AG Energy Sector Power Generation Freyeslebenstrasse 1 91058 Erlangen, Germany Siemens AG Energy Sector, Power Generation Gas Turbines Generators 10548 Berlin, Germany Siemens Industrial Turbomachinery AB Slottsvaegen SE-612 83 Finspang, Sweden Siemens Industrial Turbomachinery Ltd. Ruston House, Waterside South Lincoln LN5 7FD United Kingdom For more information, please contact our Customer Support Center. Phone: +49 180 524 70 00 Fax: +49 180 524 24 71 (Charges depending on provider) E-mail: support.energy@siemens.com Power Generation Division Order No. E50001-G430-A100-V6-4A00 Printed in Germany Dispo 34806, K12 130084, c4bs 7447, P WS 1213 Printed on elementary chlorine-free bleached paper. All rights reserved. Trademarks mentioned in this document are the property of Siemens AG, its affiliates, or their respective owners. Subject to change without prior notice. The information in this document contains general descriptions of the technical options available, which may not apply in all cases. The required technical options should therefore be specifi ed in the contact.