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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Parametric optimization and performance analysis of zeotropic mixtures for an organic Rankine cycle driven by low-medium temperature geothermal fluids
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Parametric optimization and performance analysis of zeotropic mixtures for an organic Rankine cycle driven by low-medium temperature geothermal fluids

机译:中低温地热流体驱动的有机朗肯循环中共沸混合物的参数优化和性能分析

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摘要

The selection of working fluids is one of the important approaches to optimize the performance of an organic Rankine cycle (ORC). In order to select appropriate working fluids, zeotropic mixtures were investigated in this paper by theoretical analysis and detailed numerical simulation. Since the flame retardancy of fluoride can overcome the strong flammability of HCs, the mixtures of HFCs and HFOs with HCs were particularly investigated. The influences of 10 groups of mixtures on the performance of ORC were analyzed. The results show that the maximum net power output of the ORC using each mixture corresponds to an optimal mixture ratio that gives a highest temperature glide. In addition, an optimal evaporating temperature exists. It was found that R245fa/R600a (0.9/0.1) was the most preferable mixture among the working fluids within the scope of this research. (C) 2015 Elsevier Ltd. All rights reserved.
机译:工作流体的选择是优化有机朗肯循环(ORC)性能的重要方法之一。为了选择合适的工作流体,本文通过理论分析和详细的数值模拟研究了共沸混合物。由于氟化物的阻燃性可以克服HC的强可燃性,因此特别研究了HFC和HFO与HC的混合物。分析了10组混合物对ORC性能的影响。结果表明,使用每种混合物的ORC的最大净功率输出对应于可产生最高温度滑移的最佳混合比。另外,存在最佳蒸发温度。发现在该研究范围内,R245fa / R600a(0.9 / 0.1)是工作流体中最优选的混合物。 (C)2015 Elsevier Ltd.保留所有权利。

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