首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Two-phase flow of HFO-1234yf, R-134a and R-410A in sudden contractions: Visualization, pressure drop measurements and new prediction method
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Two-phase flow of HFO-1234yf, R-134a and R-410A in sudden contractions: Visualization, pressure drop measurements and new prediction method

机译:HFO-1234yf,R-134a和R-410A在突然收缩中的两相流动:可视化,压降测量和新的预测方法

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This study presents qualitative two-phase flow visualizations of R-134a in a 10mm glass tube with a cross-section area ratio (σ_A) of 0.49. Flow patterns across the sudden contraction are simultaneous observed by top and side views with a high speed high resolution camera. The perturbation lengths up- and down-stream of the sudden contraction are experimentally investigated and their contribution to the pressure drop is identified. In addition, 360 pressure drop data points measured for two-phase flow of HFO-1234yf, R-134a and R-410A refrigerants in horizontal sudden contractions are presented and included in the appendix. The experimental pressure drop data are compared against six prediction methods from the literature. The best prediction is given by the method of Abdell et al. [1] with 54% of the data predicted within a ±30% error band. Based on the present database, a new method is proposed for predicting the pressure drop in sudden contractions, which is the sum of the pressure drop due to the flow acceleration in a geometrical area change (change in momentum) and the frictional pressure drop due to the singularity and its perturbation effects up- and down-stream (proposed equation). This new method predicts almost 95% of the database within a ±30% error band.
机译:这项研究提出了10mm玻璃管中R-134a的定性两相流动可视化,其横截面积比(σ_A)为0.49。高速高分辨率摄像机通过顶视图和侧视图同时观察到突然收缩的流动方式。实验研究了突然收缩上游和下游的扰动长度,并确定了它们对压降的影响。此外,附录中还提供了在水平突然收缩中测量的HFO-1234yf,R-134a和R-410A制冷剂两相流动的360个压降数据点。将实验压降数据与文献中的六种预测方法进行了比较。最好的预测是由Abdell等人的方法给出的。 [1],其中54%的数据预测在±30%的误差带内。在当前数据库的基础上,提出了一种新的预测突然收缩的压降的方法,该方法是由于几何区域变化(动量变化)中的流动加速度导致的压降与由于收缩引起的摩擦压降之和。奇异性及其在上游和下游的扰动效应(提议的方程)。这种新方法可以在±30%的误差范围内预测几乎95%的数据库。

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