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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Analysis of low temperature solar thermal electric generation using regenerative Organic Rankine Cycle
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Analysis of low temperature solar thermal electric generation using regenerative Organic Rankine Cycle

机译:利用再生有机朗肯循环分析低温太阳热能发电

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摘要

The innovative configuration of low temperature solar thermal electric generation with regenerative Organic Rankine Cycle (ORC) is designed, mainly consisting of small concentration ratio compound parabolic concentrators (CPC) and the regenerative ORC. Advantages of the innovative configuration such as effectively reducing heat transfer irreversibility and permitting the use of thermal storage with phase change materials (PCMs) are outlined. The numerical simulation of the heat transfer and power conversion processes are carried out based on distributed parameters. The effects of regenerative cycle on the collector, ORC, and overall electricity efficiency are then analyzed. The results indicate that the regenerative cycle has positive effects on the ORC efficiency but negative ones on the collector efficiency due to increment of the average working temperature of the first-stage collectors. Thus, it is necessary to evaluate the overall electricity efficiency when regenerative cycle is adopted. Further investigation shows that there are maximum efficiencies for both the ORC and the system electric generation on conditions of constant irradiance, evaporation temperature, and environment temperature. And the regenerative temperature at which the system electricity efficiency reaches its maximum is smaller than that at which the ORC efficiency reaches its maximum by 12-21℃. Thus, the regenerative cycle optimization of the solar thermal electric generation differs from that of a solo ORC. The system electricity efficiency with regenerative ORC is about 8.6% for irradiance 750 W/m~2 and is relatively higher than that without the regenerative cycle by 4.9%.
机译:设计了具有再生有机朗肯循环(ORC)的低温太阳能热发电的创新配置,主要由小浓度比的复合抛物面聚光器(CPC)和再生ORC组成。概述了创新配置的优点,例如有效减少了传热的不可逆性,并允许将热存储与相变材料(PCM)一起使用。基于分布参数对传热和功率转换过程进行了数值模拟。然后,分析了再生循环对收集器,ORC和整体电效率的影响。结果表明,由于第一级收集器的平均工作温度升高,再生循环对ORC效率具有正向影响,而对收集器效率则具有负向影响。因此,当采用再生循环时,有必要评估整体电力效率。进一步的研究表明,在恒定辐照度,蒸发温度和环境温度的条件下,ORC和系统发电效率最高。系统电效率达到最大值的再生温度比ORC效率达到最大值12-21℃的温度要小。因此,太阳能热发电的再生循环优化不同于单独的ORC。辐照度为750 W / m〜2时,采用再生ORC的系统电效率约为8.6%,比没有再生循环的系统电效率高4.9%。

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