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contributor authorAlokaily, Samer A.
date accessioned2022-12-27T23:22:35Z
date available2022-12-27T23:22:35Z
date copyright8/8/2022 12:00:00 AM
date issued2022
identifier issn0098-2202
identifier otherfe_144_12_121404.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4288506
description abstractThe coupling of parallel flow, in a three-layer channel, with the main fluid flow sandwiched between two Darcy–Forchheimer–Brinkman (DFB) permeable layers of varying porousness is investigated in this work. A single binary model is proposed to characterize the flow through the channel. Within the transition porous layers, the reciprocal of the permeability is represented by a polynomial of degree n. Due to the lack of an analytical framework in this regard, cutting-edge computational tools are used to provide a novel insight into fluid dynamics in heterogeneous porous media (HPM). In this context, a solver capable of simulating heterogeneous porous media is created by modifying an open source software package openfoam's steady-state finite volume solver. The solver has first been checked and approved for the case of homogeneous porous media using the homotopy analysis method (HAM) and numerical data from previous literature. Then, a parametric study is conducted to identify the effect of a specific set of medium variables on flow characteristics and transport efficiency. The variables that can be changed include the Darcy number, permeability degree, free-space layer thickness, Reynolds number, and pressure gradient.
publisherThe American Society of Mechanical Engineers (ASME)
titleNumerical Simulations of Fluid Transport in Heterogeneous Darcy–Forchheimer–Brinkman Layers
typeJournal Paper
journal volume144
journal issue12
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.4055072
journal fristpage121404
journal lastpage121404_11
page11
treeJournal of Fluids Engineering:;2022:;volume( 144 ):;issue: 012
contenttypeFulltext


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