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首页> 外文期刊>Transport in Porous Media >Porous Medium Flow and an Overlying Parallel Flow: PIV Interrogation Area and Overlaps, Interfacial Location, and Depth Ratio Effects
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Porous Medium Flow and an Overlying Parallel Flow: PIV Interrogation Area and Overlaps, Interfacial Location, and Depth Ratio Effects

机译:多孔介质流动和上覆平行流动:PIV询问面积和重叠,界面位置和深度比影响

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摘要

This paper presents an experimental work aimed at studying the effects of particle image velocimetry (PIV) interrogation area and overlaps, location of the interface, as well as depth ratios on the flow at the interface between a model porous medium and an overlying free flow. The porous media were modeled using square arrays of circular rods of diameter and porosity 0.88, filling fraction ranging from 0.47 to 0.75, and depth-to-porous medium pore ratio ranging from 5.75 to 13.69. Using a pressure-driven refractive-index matched viscous fluid, the bulk Reynolds number was kept approximately constant at a regime in which inertia was not a factor. PIV measurements were made across various streamwise-transverse planes of the test section. For the present tests, it was observed that PIV interrogation area (IA) and overlap effects on the interfacial velocities are negligible when the IA sizes in dimensionless units ranged from 0.017 to 0.145 in flow parameters and 0.036 to 0.300 in porous media parameters. Other dimensionless slip parameters are however significantly affected. Interfacial slip parameters of porous media models were found to change by as much as 120% with change in the interfacial location. The interfacial location sensitivity was also found to be dependent on the direction of deviation, the type of porous medium, and depth ratios. Volume averaged results showed that for flows over models of porous media, the depth-to-porous medium pore ratio effects are more prominent compared with the filling fraction effects, for both two- and three-dimensional porous media.
机译:本文提出了一项旨在研究颗粒图像测速(PIV)询问区域和交叠,界面位置以及深度比对模型多孔介质与上覆自由流之间界面流动的影响的实验工作。使用直径和孔隙度为0.88,填充比为0.47至0.75,深度与多孔介质的孔隙比为5.75至13.69的圆棒的方形阵列对多孔介质进行建模。使用压力驱动的折射率匹配的粘性流体,在不考虑惯性的情况下,体雷诺数保持近似恒定。在测试部分的各个横向横截面上进行PIV测量。对于本测试,观察到当无量纲单位的IA尺寸在流动参数中为0.017至0.145,在多孔介质参数中为0.036至0.300时,PIV询问面积(IA)和对界面速度的重叠影响可忽略不计。但是,其他无量纲滑移参数也会受到很大影响。发现多孔介质模型的界面滑移参数随界面位置的变化而变化多达120%。还发现界面位置敏感性取决于偏差的方向,多孔介质的类型和深度比。体积平均结果表明,对于二维和三维多孔介质,对于多孔介质模型上的流动,与填充率的影响相比,深度与多孔介质的孔隙率效应更为突出。

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