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首页> 外文期刊>Iranian journal of chemistry & chemical engineering >Investigation of Natural Convection in a Vertical Cavity Filled with a Anisotropic Porous Media
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Investigation of Natural Convection in a Vertical Cavity Filled with a Anisotropic Porous Media

机译:各向异性多孔介质填充的垂直空腔中自然对流的研究

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In present paper, a numerical analysis for a rectangular cavity filled with a anisotropic porous media has been studied. It is assumed that the horizontal walls are adiabatic t and impermeable, while the side walls of the cavity are maintained at constant temperatures and concentrations. The buoyancy force that induced the fluid motion are assumed to be cooperative. In the two extreme cases of heat-driven (N ≤ 1) and solute-driven (N ≥ I) natural convection, scale analysis is applied to predict the order of magnitudes involved in the boundary layer regime. Especially, the effects of anisotropic properties on heat and mass transfer have been considered. The variation of Nusselt and Sherwood numbers for values of permeability ratio for a wide range of thermal Rayleigh number, buoyancy ratio, and Lewis number are presented. It is demonstrated that the anisotropic properties of the porous medium considerably modify the heat and mass transfer rates from that expected under isotropic conditions.
机译:本文研究了填充各向异性多孔介质的矩形腔的数值分析。假定水平壁是绝热的并且是不可渗透的,而空腔的侧壁保持在恒定的温度和浓度下。假定引起流体运动的浮力是协作的。在热驱动(N≤1)和溶质驱动(N≥I)自然对流的两种极端情况下,应用尺度分析来预测边界层区域所涉及的量级。特别地,已经考虑了各向异性性质对传热和传质的影响。给出了在大范围的热瑞利数,浮力比和路易斯数下,渗透率比值的Nusselt和Sherwood数的变化。已经证明,多孔介质的各向异性性质大大改变了各向同性条件下预期的传热和传质速率。

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