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Fast And Accurate CO2 Properties Calculation Algorithm For Massive Numerical Simulations Of Supersonic Two-phase Ejectors

机译:超音速两相喷射器大规模数值模拟的快速准确的CO2特性计算算法

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摘要

This work presents a look-up table method to compute the thermodynamic properties of CO_2. It is motivated by the massive employment of this fluid in the industrial domain, especially in the ejector-expansion cycle. Computational Fluid Dynamics simulations have been used in the past to investigate two-phase ejector flows. CO_2 exhibits large property variations due to phase transition. As a result, it cannot be accurately modelled by a general analytical Equation of State (EoS), such as Peng-Robinson EoS, or Perfect gas EoS, etc. Hence, a tabulated EoS is developed here based on the Span-Wagner (EoS), covering the temperature range from 217 K to 800 K and pressures up to 50 MPa. Supercritical, liquid, vapor and liquid-vapor states are all included in this tabulated EoS. Besides, the density and the internal energy are chosen as two independent inputs to compute the other properties. The method is designed to be coupled with the system of equations in its conservative form which is a usual formulation for compressible solvers suited for ejectors. Through two validation cases, the proposed tabulated EoS shows good performances in terms of accuracy and efficiency, making it suitable for future massive CFD simulations.
机译:这项工作介绍了一个查找表方法来计算CO_2的热力学性质。它是通过在工业领域的大规模上使用这种流体的动机,特别是在喷射器 - 膨胀循环中。过去使用了计算流体动力学模拟,以研究两相喷射器流动。 CO_2由于相变由于相变而具有大的性能变化。结果,不能通过状态(EOS)的一般分析方程准确建模,例如彭罗宾逊EOS或完美的煤气EOS等。因此,基于Span-Wagner(EOS ),覆盖217k至800 k的温度范围,压力高达50MPa。超临界,液体,蒸汽和液态 - 蒸汽状态全部包括在该制表的EO中。此外,选择密度和内部能量作为两个独立输入来计算其他属性。该方法设计成以保守形式与方程式耦合,这是适合于喷射器的可压缩溶剂的通常配方。通过两个验证案例,提出的制表的EOS在准确性和效率方面表现出良好的表现,使其适用于未来的巨大CFD模拟。

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