Studying the natural convection problem in a square cavity by a new vorticity-stream-function approach

P. Mayeli, Tzekih Tsai, G. Sheard
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引用次数: 1

Abstract

In this study, a benchmark natural convection problem is studied under a Gay-Lussac type approximation incorporating centrifugal effects in the context of a new vorticity-stream-function approach. This approximation differs from the classic Boussinesq approximation in that density variations are considered in the advection term as well as the gravity term in the momentum equations. Such a treatment invokes Froude number as a non-Boussinesq parameter deviating results from the classic Boussinesq approximation. Numerical simulations of the natural convection in square cavity are performed up to ????=106 and ??=0.3 at ????=0.71 via proposed formulation and results are compared against the conventional Boussinesq approximation in terms of the average and local Nusselt number and entropy generation. Comparing results indicate that, up to ????=105, mentioned approaches are showing almost identical performance, but as the Rayleigh number exceeds 105, formed thermal boundary layer under Gay-Lussac type approximation is slightly thicker compared to the Boussinesq approximation accompanied by a stronger velocity gradient.
用一种新的涡度流函数方法研究方形空腔内的自然对流问题
本文采用一种新的涡度流函数方法,在考虑离心效应的Gay-Lussac近似下研究了一个基准自然对流问题。这种近似与经典的Boussinesq近似的不同之处在于,在动量方程中的平流项和重力项中都考虑了密度变化。这样的处理调用弗劳德数作为非Boussinesq参数,偏离经典Boussinesq近似的结果。在????范围内对方形腔内的自然对流进行了数值模拟=106和??=0.3,????=0.71通过提出的公式和结果与传统的Boussinesq近似在平均和局部努塞尔数和熵生成方面进行了比较。对比结果表明,达到????=105时,上述方法表现出几乎相同的性能,但当瑞利数超过105时,在Gay-Lussac近似下形成的热边界层较Boussinesq近似略厚,速度梯度更强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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