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A criterion to optimize ORC design performance taking into account real turbine efficiencies

机译:考虑实际涡轮效率的优化ORC设计性能的标准

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摘要

Several studies on Organic Rankine Cycles(ORCs)in the literature search for the optimal cycle parameters and working fluids that maximize the net power output.Only few of these studies evaluate the real turbine efficiency,but this is done only after a thermodynamic optimization is performed assuming a fixed and somewhat arbitrary efficiency value.Instead,a new design optimization procedure of the ORCs is proposed here which embeds a correlation for the design turbine efficiency.The correlation was obtained from published data in the literature and uses the volumetric expansion ratio and the size parameter as predictors of the turbine efficiency.The procedure has a general validity being the correlation applicable to any fluid.Results show how the selection of the working fluid influences the achievable turbine efficiency and how the optimal maximum pressure of the cycle deviates from that obtained in a thermodynamic optimization in which the turbine efficiency is fixed.
机译:文献中对有机朗肯循环(ORC)进行了几项研究,以寻找最佳循环参数和工作流体,以最大化净功率输出。这些研究中很少有评估实际涡轮效率的,但是只有在执行热力学优化后才能完成而是在此基础上,提出了一种新的ORC设计优化程序,该程序为设计涡轮机效率嵌入了相关性。相关性是从文献中公开的数据中获得的,并使用了体积膨胀比和大小参数作为涡轮机效率的预测指标。该程序具有适用于任何流体的相关性的普遍有效性。结果表明,工作流体的选择如何影响可达到的涡轮机效率,以及最佳循环最大压力如何偏离所获得的涡轮机效率。在热力优化中,涡轮机的效率是固定的。

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