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首页> 外文期刊>International Journal of Materials, Mechanics and Manufacturing >Exergy Analysis of Organic Rankine Cycle with Internal Heat Exchanger
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Exergy Analysis of Organic Rankine Cycle with Internal Heat Exchanger

机译:内部换热器对有机朗肯循环的火用分析

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In recent years Organic Rankine Cycle (ORC) has become a field of intense research and appears a promising technology for conversion of heat into useful work or electricity. In this work thermodynamic performance of ORC with internal heat exchanger is comparatively assessed for various working fluids based on the second law of thermodynamics. Special attention is paid to the effect of turbine inlet pressure on the exergy destructions (anergies) at various system components and the exergy efficiency of system. Results show that for a given source the component at which the greatest anergy occurs differs with working fluid. As turbine inlet pressure increases, exergy efficiency increases for working fluid such as ammonia or R22, but decreases for working fluid with low critical pressure such as iso-pentane or n-pentane.
机译:近年来,有机朗肯循环(ORC)已成为一个研究热点,并且似乎是将热量转换为有用功或电能的有前途的技术。在这项工作中,基于热力学第二定律比较评估了带有内部热交换器的ORC的热力学性能,以评估各种工作流体。要特别注意涡轮机入口压力对各种系统组件的火用破坏(无能)和系统的火用效率的影响。结果表明,对于给定的源,发生最大无能的成分随工作流体的不同而不同。随着涡轮机入口压力的增加,对于氨或R22等工作流体,(火用)效率提高,而对于具有低临界压力的异戊烷或正戊烷的工作流体,则火用效率降低。

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