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3D Numerical Modeling of Zeotropic Mixtures and Pure Working Fluids in an ORC Turbo-Expander

机译:ORC涡轮膨胀机中共沸混合物和纯净工作流体的3D数值建模

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The present paper provides a numerical study that leads to the proper selection of a working fluid for use in low-temperature organic Rankine cycle (ORC) applications. This selection is not only based on the provision of best efficiency but also to comply with global warming potential (GWP) regulations. For that purpose, different pure organic working fluids, including R245fa, R236fa, R123, R600a, R134a, and R1234yf as well as zeotropic mixture R245fa/R600a, are selected. The investigation is conducted on a single stage radial inflow turbo-expander, which was originally used in the Sundstrand Power Systems T-100 Multipurpose Small Power Unit. The commercial package ANSYS-CFX (version 16.0) was used to perform the numerical study using 3D Reynolds-Averaged Navier–Stokes (RANS) simulations. Peng–Robinson equation of state is adopted in the finite-volume solver ANSYS-CFX to determine the real-gas properties. The obtained results show that, while the use of R134a and R1234yf provides the best efficiency of all the working fluids under investigation, the latter is best selected for its comparatively low global warming effects.
机译:本文提供了一个数值研究,可以正确选择用于低温有机朗肯循环(ORC)应用的工作流体。这种选择不仅基于最佳效率的提供,而且还符合全球变暖潜能(GWP)法规。为此,选择了不同的纯有机工作流体,包括R245fa,R236fa,R123,R600a,R134a和R1234yf以及共沸混合物R245fa / R600a。研究是在单级径向流入涡轮膨胀机上进行的,该膨胀机最初用于Sundstrand Power Systems T-100多用途小型动力装置。商业软件包ANSYS-CFX(16.0版)用于使用3D雷诺平均Navier-Stokes(RANS)模拟进行数值研究。在有限体积求解器ANSYS-CFX中采用了Peng–Robinson状态方程来确定天然气属性。所获得的结果表明,尽管使用R134a和R1234yf在所有研究的工作流体中提供了最佳效率,但由于其相对较低的全球变暖效应,因此最好选择后者。

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