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   multiscale numerical modeling of solute transport with two-‎phase flow in a porous cavity  
   
نویسنده el-amin mohamed f. ,abbdel-naeem shereen
منبع journal of applied and computational mechanics - 2021 - دوره : 7 - شماره : 2 - صفحه:396 -403
چکیده    This paper introduces dimensional and numerical investigation of the problem of solute transport within the twophase flow in a porous cavity. the model consists of momentum equations (darcy’s law), mass (saturation) equation, and solute transport equation. the cavity boundaries are constituted by mixed dirichletneumann boundary conditions. the governing equations have been converted into a dimensionless form such that a group of dimensionless physical numbers appear including lewis, reynolds, bond, capillary, and darcy numbers. a timesplitting multiscale scheme has been developed to treat the time derivative discretization. also, we use the courantfriedrichslewy (cfl) stability condition to adapt the time step size. the pressure is calculated implicitly by coupling darcy’s law and the continuity equation, then, the concentration equation is solved implicitly. numerical experiments have been conducted and the effects of the dimensionless numbers have been on the saturation, concentration, pressure, velocity, and sherwood number have been investigated.
کلیدواژه porous cavity ,solute transport ,twophase flow ,timesplitting ,multiscale
آدرس aswan university, faculty of science, mathematics department, egypt, aswan university, faculty of science, mathematics department, egypt
پست الکترونیکی sheren_abdelnaem@yahoo.com
 
     
   
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