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Economics and performance forecast of gas turbine combined cycle
Zhang Xiaotao ; Hideaki, S. ; Ni Weidou ; Li Zheng
2010-05-11 ; 2010-05-11
关键词Economic Practical/ combined cycle power stations costing design economic forecasting gas turbines power engineering computing power generation economics power plants/ gas turbine combined cycle economics forecasts power plant designers Chinese powerplants commercial software Chinese investors 100 to 200 MW/ B8230G Combined cycle power stations and plants B8230F Gas-turbine power stations and plants B8110B Power system management, operation and economics B0170C Project and design engineering C7410B Power engineering computing C7120 Financial computing/ power 1.0E+08 to 2.0E+08 W
中文摘要Forecasts of the economics and performance of gas turbine combined cycle (GTCC) with various types of gas turbines will help power plant designers to select the best type of gas turbine for future Chinese powerplants. The cost and performance of various designs were estimated using the commercial software GT PRO. Improved GTCC output will increase the system efficiency which may induce total investment and will certainly increase the cumulative cash which then will induce the cost and the payback period. The relative annual fuel output increases almost in proportion to the relative GTCC output. China should select the gas turbine that provides the most economical output according to its specific conditions. The analysis shows that a GTCC power plant with a medium-sized 100 to 200 MW output gas turbine is the most suitable for Chinese investors.
语种英语 ; 英语
出版者Editorial Board of J. of Tsinghua University ; China
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/25828]  
专题清华大学
推荐引用方式
GB/T 7714
Zhang Xiaotao,Hideaki, S.,Ni Weidou,et al. Economics and performance forecast of gas turbine combined cycle[J],2010, 2010.
APA Zhang Xiaotao,Hideaki, S.,Ni Weidou,&Li Zheng.(2010).Economics and performance forecast of gas turbine combined cycle..
MLA Zhang Xiaotao,et al."Economics and performance forecast of gas turbine combined cycle".(2010).
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