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Utilisation of fluids with low global warming potential in supercritical Organic Rankine cycle

机译:在超临界有机朗肯循环中利用低全球变暖潜势的流体

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摘要

Organic Rankine cycle is simple and convenient technology for power and electricity production that can successfully exploit low temperature heat sources by the use of a refrigerant as a working fluid. However, as high GWP refrigerants are being phased out, the pursuit for the suitable low GWP working fluid continues. We have compared the performance of several wet, dry and isentropic fluids in a supercritical Rankine cycle. Thermal efficiency and net work produced were the primary parameters for comparison of high GWP R134a with its suggested low GWP replacements, namely R1234yf and R152a. Exergy analysis shows superior exergetic efficiency of R134a at high evaporator pressures. Nevertheless, R152a is a promising working fluid for a supercritical cycle, achieving larger net work and good thermal efficiency, albeit demanding a higher heat input.
机译:有机朗肯循环是用于电力和电力生产的简单便捷的技术,可以通过将制冷剂用作工作流体来成功利用低温热源。但是,随着全球升温潜能值高的制冷剂被逐步淘汰,对合适的全球升温潜能值低的工作流体的追求仍在继续。我们已经比较了超临界朗肯循环中几种湿,干和等熵流体的性能。热效率和产生的净功是比较高GWP R134a与建议的低GWP替代品(即R1234yf和R152a)的主要参数。火用分析表明,在较高的蒸发器压力下,R134a具有出色的火用效率。尽管如此,R152a是超临界循环的有前途的工作流体,尽管需要更高的热量输入,但仍能实现更大的净功和良好的热效率。

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  • 作者

    Radulovic Jovana;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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