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NATURAL CONVECTION IN A HORIZONTAL CAVITY PARTIALLY OCCUPIED BY A POROUS MEDIA SATURATED BY A COOLANT LIQUID

机译:水平孔洞中的自然对流,部分由被冷却液饱和的多孔介质占据

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The natural convection is studied in a cavity witch the lower half is, filled with a porous media that is saturated with a first fluid (liquid), and the upper is filled with a second fluid (gas). The horizontal borders are heated and cooled by uniform heat fluxes and vertical ones are adiabatic. The formulation of the problem is based on the Darcy-Brinkman model. The density variation is taken into account by the Boussinesq approximation. The system of the coupled equations is resolved by the classic finite volume method. The numerical results show that the variation of the conductivity of the porous media influences strongly the flow structure and the heat transfer as well as in upper that in the lower zones. The effect of conductivity is conditioned by the porosity which plays a very significant roll on the heat transfer. The structures of this flow show that this kind of problem with specific boundary conditions generates a complex flow structure of several contra-rotating two to two cells, in the upper half of the cavity.
机译:在空腔中研究自然对流,下半部分填充有充满第一流体(液体)的多孔介质,而上半部分填充有第二流体(气体)。水平边界通过均匀的热通量加热和冷却,而垂直边界则是绝热的。问题的提出是基于Darcy-Brinkman模型的。 Boussinesq近似考虑了密度变化。耦合方程组通过经典的有限体积法求解。数值结果表明,多孔介质电导率的变化对流动结构和传热以及下部区域的上部和下部的流动都有很大影响。电导率的影响取决于孔隙率,该孔隙率对传热有很大影响。这种流动的结构表明,这种具有特定边界条件的问题会在型腔的上半部生成一个复杂的流动结构,该结构具有几个反向旋转的两个到两个单元。

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