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Mass flowrate characteristics of supercritical CO2 flowing through an electronic expansion valve

机译:流经电子膨胀阀的超临界CO2的质量流量特性

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Electronic expansion valves (EEV) are employed increasingly in transcritical CO2 systems. In order to investigate the mass flowrate characteristics of supercritical CO2 flowing through an EEV, the effects of EEV outlet pressure on the mass flowrate of CO2 is studied under constant EEV inlet pressure and inlet temperature. The two-phase flow patterns of supercritical CO2 flowing through an EEV are revealed, and the conventional choked flow judgment formulas is proved effective for supercritical CO2. Based on Bernoulli Equation with expansion factor, the mass flowrate correlation of supercritical CO2 flowing through an EEV is presented. The influence of the expansion coefficient on the mass flowrate is considered in the correlation in which the correction coefficient is only affected by the EEV opening, the changing rate of the density and the pressure difference in the entrance region. The mass flowrate predicted by the correlation in this paper shows a good agreement with experimental data. The maximum relative errors are within 10%. The average and standard deviations are 0.76% and 5.9%, respectively. (C) 2014 Elsevier Ltd and IIR. All rights reserved.
机译:电子膨胀阀(EEV)越来越多地用于跨临界CO2系统中。为了研究流经EEV的超临界CO2的质量流量特性,研究了在恒定EEV入口压力和入口温度下,EEV出口压力对CO2质量流量的影响。揭示了流经EEV的超临界CO2的两相流型,并证明了传统的ked流判断公式对超临界CO2是有效的。基于具有膨胀因子的伯努利方程,给出了流经EEV的超临界CO2的质量流量相关性。关联系数考虑了膨胀系数对质量流量的影响,其中校正系数仅受EEV开口,密度变化率和入口区域中的压差影响。通过相关性预测的质量流量与实验数据显示出良好的一致性。最大相对误差在10%以内。平均和标准偏差分别为0.76%和5.9%。 (C)2014 Elsevier Ltd和IIR。版权所有。

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