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System model derivation of the CO_2 two-phase ejector based on the CFD-based reduced-order model

机译:基于CFD降阶模型的CO_2两相喷射器系统模型推导

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摘要

The developed reduced-order model (ROM) of the R744 two-phase ejector was presented in this paper. The proper orthogonal decomposition (POD) model was employed together with the radial basis function (RBF) to evaluated the ejector performance at the motive nozzle operating regime from 70 bar to 100 bar. The proposed model was built based on the full CFD model of the R744 two-phase ejector with homogeneous equilibrium flow assumption. The validation procedure was performed to evaluate the ejector nozzles mass flow rate discrepancies of ROM compared to the CFD results and experimental data. In addition, the accuracy analysis of the ROM flow field results compared to the CFD results was performed. The validation process based on the CFD results and experimental data indicated the high accuracy of ROM for both nozzles mass flow rate within +/- 10% for most of the investigated operating points. Hence, the high accuracy of the computed mass flow rates allows ROM implementation into the dynamic simulations of the refrigeration system to evaluate the ejector performance at given operating points with negligible time effort. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了R744两相喷射器的降阶模型(ROM)。适当的正交分解(POD)模型与径向基函数(RBF)一起用于评估在70 bar至100 bar的动力喷嘴工作状态下的喷射器性能。该模型基于R744两相喷射器的完整CFD模型,并假设均相平衡流量。与CFD结果和实验数据相比,执行验证程序来评估ROM的喷嘴质量流率差异。此外,还对ROM流场结果与CFD结果进行了准确性分析。基于CFD结果和实验数据的验证过程表明,对于大多数研究工作点,两个喷嘴的质量流量ROM的高精度都在+/- 10%之内。因此,计算出的质量流量的高精度允许将ROM实施到制冷系统的动态仿真中,从而以可忽略的时间精力评估给定工作点的喷射器性能。 (C)2017 Elsevier Ltd.保留所有权利。

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