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Analytical thermal efficiency of medium-low temperature organic Rankine cycles derived from entropy-generation analysis

机译:熵产生分析推导的中低温有机朗肯循环的解析热效率

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Conventionally, we need complete and accurate property diagrams or equations of state of the working fluid to calculate the thermal efficiency of ORCs (organic Rankine cycles). In this paper, we develop by entropy-generation analysis several analytical expressions for the thermal efficiency of ORCs. These analytical formulas are functions of several dimensionless variables, enabling fast and accurate calculations without recourse to thermodynamic diagrams or equations of state. The entropy-generation analysis clarifies the thermodynamic mechanism behind the effect of superheat in the evaporator on the thermal efficiency. Among the derived dimensionless variables, cT(3)/r (T3 is the evaporating temperature, r is the heat of evaporation at the evaporating temperature, and c is the average heat capacity of the saturated liquid) reflects the influence of the critical temperature on the thermal efficiency and can serve as an indicator of evaluating working fluids in the same group: thermal efficiency generally decreases with cT3/r for the working fluids in the same category. (C) 2016 Elsevier Ltd. All rights reserved.
机译:传统上,我们需要完整而准确的工作流体特性图或状态方程来计算ORC(有机朗肯循环)的热效率。在本文中,我们通过熵产生分析开发了ORC的热效率的几种解析表达式。这些分析公式是几个无量纲变量的函数,无需借助热力学图或状态方程即可进行快速准确的计算。熵产生分析阐明了蒸发器中过热对热效率的影响的热力学机理。在得出的无量纲变量中,cT(3)/ r(T3为蒸发温度,r为蒸发温度下的蒸发热,c为饱和液体的平均热容)反映了临界温度对热效率,并且可以用作评估同一组工作流体的指标:对于同一类别的工作流体,热效率通常随cT3 / r降低。 (C)2016 Elsevier Ltd.保留所有权利。

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