期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于生态系统的梯级电站最优发电收益模型 被引量:2
1
作者 莫莉 周建中 +2 位作者 李清清 罗志猛 张勇传 《水力发电》 北大核心 2009年第3期6-10,共5页
针对同流域不同业主梯级电站间的水电耦合特点,分析了梯级电站间的关系,描述了梯级电站生态系统;建立了离散的梯级生态系统发电用水模型,基于生态学中种群最优收获思想,采用发电用水率控制发电水量,分别比较了电站独立发电和梯级生态系... 针对同流域不同业主梯级电站间的水电耦合特点,分析了梯级电站间的关系,描述了梯级电站生态系统;建立了离散的梯级生态系统发电用水模型,基于生态学中种群最优收获思想,采用发电用水率控制发电水量,分别比较了电站独立发电和梯级生态系统两种模式下的最优收益。算例分析表明,提出的模型可以有效衡量上游电站调节下游电站入流的贡献,引导梯级生态系统成员电站获得最优收益的同时,使系统资源得到更有效的配置,实现成员电站共赢。 展开更多
关键词 梯级电站生态系统 平衡点 发电用水率 模型
下载PDF
Brayton Power Cycles for Electricity Generation from Fusion Reactors
2
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.
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部