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Mass flow characteristics and empirical modeling of R22 and R410A flowing through electronic expansion valves

机译:流经电子膨胀阀的R22和R410A的质量流量特性和经验模型

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The applications of electronic expansion valves (EEVs) into multi-type heat pumps and inverter heat pumps in building air-conditioning systems have increased for comfort environmental control and energy conservation. However, test data and mass flow models of EEVs are very limited in open literature. The objectives of this study are to investigate the mass flow characteristics of R22 and R410A through EEVs and to develop an empirical correlation for the prediction of mass flow rates of R22 and R410A through EEVs. Mass flow rates through six EEVs were measured by varying the EEVopening, inlet and outlet pressures, and the subcooling. Mass flow rates of R410A were compared with those of R22 at the same test conditions. Based on the experimental data, an empirical correlation for mass flow predictions in EEVs was developed by modifying the orifice equation. The predictions of the present correlation showed good agreement with the measured data with average and standard deviations of 0.76% and 5.9%, respectively. Approximately 92% of the measured data were within ±10% of the predictions.
机译:电子膨胀阀(EEV)在建筑物空调系统中的多功能热泵和逆变器热泵中的应用已经增加,以实现舒适的环境控制和节能效果。但是,EEV的测试数据和质量流量模型在公开文献中非常有限。这项研究的目的是研究R22和R410A通过EEV的质量流量特性,并建立经验相关性以预测R22和R410A通过EEV的质量流量。通过改变EEV的开度,入口和出口压力以及过冷来测量通过六个EEV的质量流率。在相同的测试条件下,将R410A的质量流率与R22的质量流率进行了比较。根据实验数据,通过修改孔口方程,建立了电动汽车中质量流量预测的经验相关性。当前相关性的预测显示与实测数据吻合良好,平均和标准偏差分别为0.76%和5.9%。大约92%的测量数据在预测值的±10%之内。

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