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Small scale radial inflow turbine performance and pre-design maps for Organic Rankine Cycles

机译:小型径向流入涡轮机性能和有机朗肯循环的预先设计图

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While small scale ORCs are currently dominated by volumetric expanders, the use of turbomachines is reconsidered due to their high efficiency and power density. Yet, suitable performance maps, which ensure an accurate starting point for the turbine design, are still missing for small scale turbines. This paper proposes a new non-dimensional performance map tailored for small scale turbines. The map is generated using an experimentally validated 1D code and adapted to small scale ORCs applications. A new polynomial fit is proposed, which accounts for the pressure ratio, since it is suggested to have a strong influence on the shape of the map. Through the analysis of the turbine losses, the underlying phenomena shaping the efficiency map are explained. A sensitivity analysis of the geometrical dependencies on the map shows a strong impact of the shroud to tip radius ratio, and explains why the Ns-Ds surface of the presented map is smaller than the original one. Compared to the experimentally validated 1D model the new map yields prediction errors below 4%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:虽然小规模的ORC目前主要由体积膨胀器控制,但由于涡轮机的高效率和高功率密度,因此重新考虑使用涡轮机。然而,对于小型涡轮机,仍然缺少确保涡轮机设计的准确起点的合适性能图。本文提出了一种适用于小型涡轮机的新的无量纲性能图。该地图是使用经过实验验证的一维代码生成的,适用于小型ORC应用。提出了一种新的多项式拟合方法,该方法可以解决压力比问题,因为它对地图的形状影响很大。通过对涡轮机损耗的分析,解释了影响效率图的潜在现象。对地图上几何形状相关性的敏感性分析显示,罩与尖端半径之比的影响很大,并解释了为什么所显示地图的Ns-Ds表面小于原始表面。与经过实验验证的一维模型相比,新地图产生的预测误差低于4%。 (C)2017 Elsevier Ltd.保留所有权利。

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