Download - Fuel flexibility of industrial gas turbines
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Fuel flexibility of industrial gasturbinesProf Jenny LarfeldtDecember 1, 2020
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Finspång test bed 1 (SGT-600)
Annular combustor with 30 3rd
generation dual fuel DLE burnersSingle shaft gas turbineRotor speed 6600 rpm
15 stage compressor3 stages variable guide vanes
3 stage turbine
Same core design for50 & 60 Hz applications
Siemens Industrial Gas TurbinesSGT-800
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Hydrogen in gas turbines?
Combined CyclePower Plant
Simple CycleGas Turbine
Simple cycle power generation62 MW, 41%
Combined cycle power generation180 MW, >60 %
10090807060504030
700
600
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300
200
100
0
Natural gas
NG with 75 vol-% H2
NG with 90 vol-% H2
CO
2[g
/kW
h]
Power plant efficiency [%]
EIB limit (250 g/kWh)
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Hydrogen capabilities industrial gas turbines
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Gas turbine fuel:Hydrogen or hydrogen carriers?
120100806040200
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0
LHV [MJ/kg]
Wob
be In
dex
[MJ/m
3]
NG30/70
50/5070/30 80/20 90/10 H2
Metanol
Ammoniak
SGT-800 gaseousfuel specification(WI ~25-75)
Heavy hydrocarbons
High H2
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Fuel flexibility enabling fast decarbonisation in alreadyexisting infrastructure
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Cooperation for fossil-free cogenerationSiemens Energy and Göteborg Energi
Rya Combined Heat and Power plant (CHP)Gothenburg, Sweden
A dual fuel burner for operation on green fuels, gaseousas well as liquid, is targeted for demonstration in Rya in2024.
Fuel flexibility enabled by additive manufacturing:
Ø For R&D speed when developing next generation ofgreen burners
Ø For retrofit of existing unitsØ For faster repair and customer upgrades with new
functionality printed into themØ Switching from traditional supply chains to our own
additive manufacturing centers in Finspång, Berlin, UKand Orlando.
By 2025, all district heating in Gothenburg, Sweden, will be produced by renewable or recovered energy sources.
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Finspång SGT-800 MRT
LNG plant
New role of industrial gas turbines;grid service and fast response
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Zero Emission Hydrogen Turbine CenterFinspang, Sweden
Development gas turbine test facility towards a zero emissiondemonstrator plant by:• H2 production by utilizing power of turbine test runs• Green solar power (PV) for continuously H2 production• Using H2 as turbine fuel to reduce LNG consumption
Funding gratefully acknowledgedSwedish Energy Agency and EUERA-Net Smart Energy System
Finspång, Sweden
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Thank you
Prof. Jenny Larfeldt
Siemens Energy ABSE G IGT R&DSlottsvaegen 2-6SE-612 83 Finspang, SwedenTel.: +46 122 82789Fax: +46 122 81349Mobile: +46 70 1801447mailto:[email protected]
https://www.linkedin.com/in/jenny-larfeldt-0b825a44/