首页> 外文期刊>International Journal of Heat and Fluid Flow >Characterization of pressure-wave propagation during the condensation of R404A and R134a refrigerants in pipe mini-channels that undergo periodic hydrodynamic disturbances
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Characterization of pressure-wave propagation during the condensation of R404A and R134a refrigerants in pipe mini-channels that undergo periodic hydrodynamic disturbances

机译:R404A和R134a制冷剂在周期性流体动力扰动的管道小通道中凝结时压力波传播的特征

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摘要

In the present paper, an attempt was undertaken to model the propagation of a pressure wave triggered by periodic hydrodynamic instabilities in the condensation of the R404A and R134a refrigerants in pipe mini-channels. A homogenous transient two-fluid model was used based on balance equations. The model presents the complexity of multi-phase flows. The heat exchange between the phases in the condensation process was calculated using the one-dimensional form of Fourier's equation. The dependence which defines the interfacial the drag forces for the flow in mini-channels was also taken into consideration. The results of the numerical calculations were verified with experimental investigations and satisfactory compliance was obtained.
机译:在本文中,人们试图对由周期性流体动力不稳定性触发的压力波的传播进行建模,该周期性流体不稳定性是由R404A和R134a制冷剂在管道微型通道中的冷凝引起的。基于平衡方程,使用了均质的瞬态两流体模型。该模型提出了多相流的复杂性。使用傅立叶方程的一维形式计算冷凝过程中各相之间的热交换。还考虑了定义界面阻力的依赖关系,该界面阻力是微通道中的流动。通过实验研究验证了数值计算的结果,并获得了令人满意的一致性。

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