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Exergy analysis of parabolic trough solar collectors integrated with combined steam and organic Rankine cycles

机译:结合蒸汽和有机朗肯循环的抛物槽式太阳能集热器的火用分析

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In this paper, detailed exergy analysis of selected thermal power systems driven by parabolic trough solar collectors (PTSCs) is presented. The power is produced using either a steam Rankine cycle (SRC) or a combined cycle, in which the SRC is the topping cycle and an organic Rankine cycle (ORC) is the bottoming cycle. Seven refrigerants for the ORC were examined: R134a, R152a, R290, R407c, R600, R600a, and ammonia. Key exergetic parameters were examined: exergetic efficiency, exergy destruction rate, fuel depletion ratio, irreversibility ratio, and improvement potential. For all the cases considered it was revealed that as the solar irradiation increases, the exergetic efficiency increases. Among the combined cycles examined, the R134a combined cycle demonstrates the best exergetic performance with a maximum exergetic efficiency of 26% followed by the R152a combined cycle with an exergetic efficiency of 25%. Alternatively, the R600a combined cycle has the lowest exergetic efficiency, 20-21%. This study reveals that the main source of exergy destruction is the solar collector where more than 50% of inlet exergy is destructed, or in other words more than 70% of the total destructed exergy. In addition, more than 13% of the inlet exergy is destructed in the evaporator which is equivalent to around 19% of the destructed exergy. Finally, this study reveals that there is an exergetic improvement potential of 75% in the systems considered.
机译:本文介绍了由抛物线槽式太阳能集热器(PTSC)驱动的选定火电系统的详细火用分析。使用蒸汽朗肯循环(SRC)或联合循环来产生功率,其中SRC为顶部循环,有机朗肯循环(ORC)为底部循环。检查了ORC的七个制冷剂:R134a,R152a,R290,R407c,R600,R600a和氨。检查了主要的能动参数:能动效率,能动破坏率,燃料消耗率,不可逆率和改进潜力。对于所考虑的所有情况,都显示出随着太阳辐射的增加,能量效率也增加。在所研究的联合循环中,R134a联合循环表现出最佳的运动表现,最大运动效率为26%,其次是R152a联合循环,其运动效率为25%。另外,R600a联合循环的最低运动效率为20-21%。这项研究表明,火用破坏的主要来源是太阳能集热器,其中超过50%的入口火用被破坏,换言之,总火用超过70%。另外,在蒸发器中破坏了超过13%的入口火用,相当于大约19%的被破坏的火用。最后,这项研究表明,所考虑的系统有75%的显着改善潜力。

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