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A new criterion to optimize ORC design performance using efficiency correlations for axial and radial turbines

机译:利用效率相关性优化轴向和径向涡轮机ORC设计性能的新标准

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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 studies carry out a preliminary turbine design to calculate an accurate value of turbine efficiency, but this is done only after the cycle thermodynamic optimization is performed assuming a fixed and somewhat arbitrary value of turbine efficiency. Instead, a new design optimization procedure of ORCs is proposed here which embeds correlations for the design efficiency of both axial and radial turbines. The correlations are obtained from published data in the literature and use the volumetric expansion ratio (VR) and the size parameter (VH) as performance predictors. While been applied to a selected number of working fluids and single stage turbines, the procedure has a general validity being the correlations applicable to any fluid and turbine type. Results show how the turbine efficiency, and in turn the optimum cycle parameters, are influenced by the fluid properties through the turbine VH and VR values, highlighting that the procedure for working fluid selection cannot ignore the real turbine behaviour. So, the optimum design that is obtained is expected to give a behaviour much closer to reality.
机译:文献中对有机朗肯循环(ORC)的一些研究都在寻找最佳循环参数和工作流体,以最大化净功率输出。只有很少的研究进行了初步的涡轮机设计以计算出涡轮机效率的准确值,但是只有在假定涡轮机效率值固定且有些任意的情况下进行循环热力学优化之后,才进行此项研究。取而代之的是,在此提出了一种新的ORC设计优化程序,该程序嵌入了轴向和径向涡轮机设计效率的相关性。相关性是从文献中的公开数据中获得的,并使用体积膨胀率(VR)和尺寸参数(VH)作为性能预测指标。虽然已应用于选定数量的工作流体和单级涡轮机,但该程序具有普遍的有效性,即适用于任何类型的流体和涡轮机的相关性。结果显示了涡轮效率以及最佳循环参数如何受到涡轮VH和VR值的流体特性的影响,从而突出表明,选择工作流体的过程不能忽略涡轮的实际性能。因此,预期获得的最佳设计将使行为更接近实际。

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