SECOND EDITION: ASSESSMENT OF CURRENT CAPABILITIES AND NEAR-TERM AVAILABILITY OF HYDROGEN-FIRED GAS TURBINES CONSIDERING A LOW-CARBON FUTURE

被引:0
作者
Webb, Bobby M. [1 ]
Harper, Jim [1 ]
Steele, Robert [1 ]
Noble, David R. [1 ]
Emerson, Benjamin [2 ]
Wu, David [2 ]
Lieuwen, Tim [2 ]
机构
[1] EPRI, Charlotte, NC 28262 USA
[2] Georgia Inst Technol, Ben T Zinn Combust Lab, Atlanta, GA USA
来源
PROCEEDINGS OF ASME TURBO EXPO 2023: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2023, VOL 6 | 2023年
关键词
Gas Turbine; Combustion; Hydrogen; Decarbonization;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Gas turbines continue to play a vital role in the global push for decarbonization, both for near-term reductions as coal phases out for natural gas operation and long-term transitions to carbon-free fuels. While decarbonization presents a threat to traditional combustion-based power generation, it offers an opportunity for a renewed role of the existing and future gas turbine fleet in a carbon-free future. This renewed role positions gas turbines to help stabilize power grids with large portfolios of intermittent renewable generation sources, with the gas turbines operating on low-carbon fuels such as hydrogen. Historical approaches to decarbonization of gas turbine combustion face hydrogen fuel content limitations, while simultaneously implementing dry, low-NOx (DLN) technologies. In 2020, we presented a review of the current state-of-the-art, and we projected the emerging technologies for DLN, high hydrogen combustion capabilities. In this paper, we revisit those projections and update the current state-of-the-art combustion capabilities through the last three years of development along with new initiatives to push capabilities further. Readers of this paper will take away an understanding of where the field is on low-NOx, high hydrogen combustion. Additionally, an overview takeaway will be understanding of the current capabilities of each of the OEMs and other major players, including the developing technologies and targets that each is working towards for a carbon-free, dispatchable power generation source.
引用
收藏
页数:12
相关论文
共 50 条
[31]  
Mitsubishi Heavy Industries Ltd., 2021, Hydrogen Power Generation Handbook, METP-01GT02E1-A-0
[32]  
Mitsubishi Power, 2022, Creating a sustainable future through hydrogen generation.
[33]  
Modern Power Systems, 2022, Hydrogen combustion retrofits for the existing gas turbine fleet
[34]  
Natarajan J., 2020, US Patent, Patent No. [US10,690,349B2, 10690349]
[35]  
Natarajan Jayaprakash, 2021, Patent, Patent No. [EP3889507A1, 3889507]
[36]  
Olbes A., 1997, High Compatibility Between Gas Turbine and Refinery Utilities: The Joint Experience of REPSOL and GE Energy Products
[37]  
Patel S., 2019, Power Mag
[38]  
PSM a Hanwha Company, 2022, FlameSheetT A Revolution in Combustion Technology
[39]  
PSM a Hanwha Company, 2021, FlamesheetTM A Revolution in Combustion Technology for Power Generation Gas Turbines.
[40]  
Robb Drew, 2022, TURBOMACHINERY INTERNATIONALSeptember 27