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首页> 外文期刊>International Journal of Thermal Sciences >Heat and mass transfer by natural convection in a bi-layered cubic enclosure with opposing temperature and concentration gradients
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Heat and mass transfer by natural convection in a bi-layered cubic enclosure with opposing temperature and concentration gradients

机译:双层立方体外壳中自然对流的热量和传质,具有相反的温度和浓度梯度

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摘要

The present study reports a numerical investigation of double-diffusive natural convective heat and mass transfer with three-dimensional flows, in a bi-layered cubic enclosure. The right and left vertical walls are subjected to uniform different temperatures and concentrations while the other walls are assumed adiabatic and impermeable. The Prandtl number Pr is kept at 7 characterizing the case of aqueous solutions as a fluid saturating the two porous layers. The main parameters governing the problem are the Rayleigh number varying from 10(4) to 10(6), the buoyancy ratio for opposing flows (N 0) from -4 to -0.5, Lewis number form (Le) from 1 to 100, the Darcy number from 10(-8) to 1, the thermal conductivity and the mass diffusivity ratios (lambda(r) and D-r) respectively from 0.01 to 10(3). The nonlinear coupled dimensionless governing equations are resolved using the control volume method. The results of this study are presented in terms of streamlines, isotherms, isoconcentration lines, the average Nusselt and Sherwood numbers and for the velocity, the concentration and the temperature profiles.
机译:本研究报告了双分层立方壳体中具有三维流的双扩散自然对流热和质量传递的数值研究。右侧和左垂直墙体经受均匀的不同温度和浓度,而另一壁被认为是绝热和不可渗透的。 Prandtl Number Pr保持在7,其表征作为饱和两个多孔层的流体的水溶液的情况。管理问题的主要参数是从10(4)到10(6)变化的RAYLEIGH数,相反流量的浮力比从-4到-0.5,LEWIS编号形式(LE)从1到1如图100所示,从10(-8)至1,导热率和质量扩散率(Lambda(R)和Dr)的达通数分别为0.01至10(3)。使用控制体积方法解决非线性耦合的无量纲控制方程。本研究的结果是以精简,等温物,等因素,等温度和舍伍德数以及速度,浓度和温度分布的方向呈现。

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