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Simplified modeling analysis of mass flow characteristics in electronic expansion valve

机译:电子膨胀阀质量流量特性的简化建模分析

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摘要

A mass flow correlation was presented to predict mass flow coefficient in an EEV (electronic expansion valve) based on extensive experimental data for R22, R410A and R407c. Bernoulli equation for short orifice valve is modified by introducing expansion factor and the modified equation can well depict the behavior of fluid through EXV under linear, nonlinear and choked regions. Experimental analysis shows that the mass flow coefficient is dominantly influenced by EEV opening and subcooling value. Therefore, only the two parameters (EEV opening and subcooling) are used to develop the mass flow coefficient correlation. The flow coefficient predicted by polynomial fit in this paper shows a good agreement with experimental data for three datasets of R22, R410A and R407c and the relative errors are within 5% for 98% of experimental data.
机译:基于R22,R410A和R407c的大量实验数据,提出了一种质量流量相关性来预测EEV(电子膨胀阀)中的质量流量系数。通过引入膨胀系数对短节流阀的伯努利方程进行了修正,该修正方程可以很好地描述在线性,非线性和阻塞区域通过EXV进行的流体行为。实验分析表明,质量流量系数主要受EEV开度和过冷值的影响。因此,仅使用两个参数(EEV开度和过冷度)来建立质量流量系数的相关性。本文通过多项式拟合预测的流量系数与R22,R410A和R407c的三个数据集的实验数据显示出良好的一致性,并且相对误差在98%的实验数据的5%以内。

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