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Computation of turbulent natural convection with the elliptic-blending differential and algebraic flux models

机译:用椭圆形 - 混合差分和代数磁通模型计算湍流自然对流

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摘要

A computation of turbulent natural convection in enclosures with the elliptic-blending based differential and algebraic flux models is presented. The primary emphasis of the study is placed on an investigation of accuracy of the treatment of turbulent heat fluxes with the elliptic-blending second-moment closure for the turbulent natural convection flows. The turbulent heat fluxes are treated by the elliptic-blending based algebraic and differential flux models. The proposed models are applied to the prediction of turbulent natural convections in a 1:5 rectangular cavity and in a square cavity with conducting top and bottom walls. It is shown that both the elliptic-blending based models predict well the mean velocity and temperature, thereby the wall shear stress and Nusselt number. It is also shown that the elliptic-blending based algebraic flux model produces solutions which are as accurate as those by the differential flux model.
机译:提出了一种基于椭圆形差分和代数磁通模型的外壳湍流自然对流的计算。 该研究的主要重点是对湍流热通量的治疗准确性的调查,湍流自然对流流动的椭圆形二点闭合。 通过基于椭圆形的代数和差分通量模型处理湍流热通量。 所提出的模型应用于在1:5矩形腔中的湍流自然对流的预测,并且在具有导电顶壁和底壁的方腔中的预测。 结果表明,基于椭圆混合的模型可以预测平均速度和温度,从而预测壁剪切应力和衬布数。 还示出了基于椭圆形的代数助焊剂模型产生与差分通量模型一样准确的溶液。

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