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Influence of Hydrodynamic Conditions on the Type and Area of Occurrence of Gas–Liquid Flow Patterns in the Flow through Open–Cell Foams

机译:流体动力条件对流过开孔泡沫流动液流动模式的类型和面积的影响

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摘要

This paper reports the results of a study concerned with air−water and air−oil two–phase flow pattern analysis in the channels with open–cell metal foams. The research was conducted in a horizontal channel with an internal diameter of 0.02 m and length of 2.61 m. The analysis applied three foams with pore density equal to 20, 30 and 40 PPI (pore per inch) with porosity, typical for industrial applications, changing in the range of 92%–94%. Plug flow, slug flow, stratified flow and annular flow were observed over the ranges of gas and liquid superficial velocities of 0.031–8.840 m/s and 0.006–0.119 m/s, respectively. Churn flow, which has not yet been observed in the flow through the open–cell foams, was also recorded. The type of flow patterns is primarily affected by the hydrodynamic characteristics of the flow, including fluid properties, but not by the geometric parameters of foams. Flow patterns in the channels packed with metal foams occur in different conditions from the ones recorded for empty channels so gas−liquid flow maps developed for empty channels cannot be used to predict analyzed flows. A new gas−liquid flow pattern map for a channel packed with metal foams with the porosity of 0.92–0.94 was developed. The map is valid for liquids with a density equal to or lower than the density of water and a viscosity several times greater than that of water.
机译:本文报道了具有开放式电池金属泡沫的通道中的空气水和空气油两相流动模式分析的研究结果。该研究在水平通道中进行,内径为0.02米和长度为2.61米。该分析施用三个孔密度等于20,30和每英寸的孔径为每英寸的孔隙率,典型的工业应用,在92%-94%的范围内变化。在0.031-8.840m / s和0.006-0.119m / s的气体和液体表面速度范围内观察到塞流,块状流动,分层流和环形流量。还记录了尚未在流过开放式电池泡沫中观察到的搅拌流。流动模式的类型主要受流动的流体动力学特性影响,包括流体性质,但不是由泡沫的几何参数的影响。与金属泡沫包装的通道中的流动模式发生在从记录的空通道记录的不同条件下发生,因此为空通道开发的气液流程图不能用于预测分析的流动。开发出具有孔隙率为0.92-0.94的金属泡沫的通道的新的气液流动图案图。该地图对密度等于或低于水密度的液体和粘度大于水的液体。

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