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S-CO_2布雷顿循环中离心式压缩机研究现状 被引量:4
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作者 秦政 林志民 +2 位作者 刘惠民 黄振军 王林涛 《柴油机》 2016年第3期52-55,共4页
从小型离心式压缩机运行效率和冷凝影响两方面介绍了国内外机构对S-CO2离心式压缩机研究的现状。指出:采用小型离心式压缩机对布雷顿动力循环系统中压缩机的设计和理论研究进行实验验证仍是最优的方案;应充分利用现有技术深入研究小型... 从小型离心式压缩机运行效率和冷凝影响两方面介绍了国内外机构对S-CO2离心式压缩机研究的现状。指出:采用小型离心式压缩机对布雷顿动力循环系统中压缩机的设计和理论研究进行实验验证仍是最优的方案;应充分利用现有技术深入研究小型离心式压缩机内部流场分布和边界层的影响,为S-CO2离心式压缩机设计与优化提供理论支持。 展开更多
关键词 超临界二氧化碳 布雷顿动力循环 离心式压缩机
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Brayton Power Cycles for Electricity Generation from Fusion Reactors
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作者 J.l. Linares L.E. Herranz +1 位作者 B.Y. Moratilla I.P. Serrano 《Journal of Energy and Power Engineering》 2011年第7期590-599,共10页
Brayton power cycles for fusion reactors have been investigated, using Helium in classical configurations and CO2 in a recompression layout. Thermal sources from the reactor have strongly constrained the cycle configu... Brayton power cycles for fusion reactors have been investigated, using Helium in classical configurations and CO2 in a recompression layout. Thermal sources from the reactor have strongly constrained the cycle configurations, hindering use of a recuperator in Helium cycles and conditioning the outlet turbine temperature in CO2 ones. In both cycles, it is possible to take advantage of the exhaust thermal energy by coupling the Brayton to a Rankine cycle, with an organic fluid in the helium case (iso-butane has been investigated) and steam in the CO2 case. The highest efficiency achieved with Helium cycle is 38.5% using Organic Rankine Cycle and 32.6% with Helium alone. The efficiency changes from 46.7% using Rankine cycle to 41% with CO2 alone. The Helium cycle is highly sensitive to turbine efficiency and in a moderate way to compressor efficiency and pressure drops, being nearly insensitive to thermal effectiveness in heat exchangers. On the other hand, CO2 is nearly insensitive to all the parameters. 展开更多
关键词 Brayton cycles fusion technology CO2 recompression cycles organic Rankine cycles.
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