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Theoretical model of the boundary condition at a fluid-porous interface

✍ Scribed by S. M. Ross


Publisher
American Institute of Chemical Engineers
Year
1983
Tongue
English
Weight
643 KB
Volume
29
Category
Article
ISSN
0001-1541

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✦ Synopsis


An equation for the volume average fluid velocity in a boundary layer region between a fluid and a porous medium is derived, The result is valid for a general anisotropic porous medium subject to the restrictions imposed by the assumptions made in the analysis. The basic equations of motion for an incompressible Newtonian fluid with negligible inertia are used and a linear map M;j from the volume average velocity ( v ) into the point velocity v is assumed to exist. Using scaling arguments, an equation for (v) is found which reduces to the Darcy equation for a point entirely within the porous medium below the boundary region and to the usual Navier-Stokes equation for a point entirely within the fluid above the boundary region. The form of the equation contains two of the terms that were originally hypothesized and tested experimentally by Beavers and Joseph (1967). In particular, the following equation is obtained:


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