2010
DOI: 10.1615/jpormedia.v13.i6.40
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Non-Darcy Mixed Convection in a Fluid-Saturated Square Porous Enclosure Under Suction Effect: Part I

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Cited by 5 publications
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“…Fabien and Mazen [29] have presented an efficient and easily implementable finite volume method simulating radionuclide transport through highly heterogeneous grounds in three space dimensions. Kumar et al [30] have numerically studied the mixed convection flow in a vertical 2D square enclosure filled with a non-Darcian fluid-saturated homogeneous porous medium under the influence of suction/injection effect. Arpino et al [31] have employed a three-dimensional (3D) artificial compressibility (AC) characteristic based split (CBS) scheme to solve forced or natural convection process in partly porous 3D domains.…”
Section: Introductionmentioning
confidence: 99%
“…Fabien and Mazen [29] have presented an efficient and easily implementable finite volume method simulating radionuclide transport through highly heterogeneous grounds in three space dimensions. Kumar et al [30] have numerically studied the mixed convection flow in a vertical 2D square enclosure filled with a non-Darcian fluid-saturated homogeneous porous medium under the influence of suction/injection effect. Arpino et al [31] have employed a three-dimensional (3D) artificial compressibility (AC) characteristic based split (CBS) scheme to solve forced or natural convection process in partly porous 3D domains.…”
Section: Introductionmentioning
confidence: 99%
“…Lai 22 explained in detail about the mixed convection in saturated porous media. Kumar et al 23 have studied mixed convection flow in a vertical square enclosure filled with a non-Darcian fluid saturated homogeneous porous medium by providing an inlet at the bottom wall and an outlet with a suction on the top wall numerically by using the Galerkin finite element method. Nazar et al 24 analyzed mixed convection boundary layer flow past a horizontal circular cylinder in a porous medium based on Brinkman model.…”
Section: Introductionmentioning
confidence: 99%