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Natural convection in porous triangular enclosure with a centered conducting body1^

机译:具有中心导体的多孔三角形外壳中的自然对流1 ^

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A numerical work was performed to examine the heat transfer and fluid flow due to natural convection in a porous triangular enclosure with a centered conducting body. The center of the body was located onto the gravity center of the right-angle triangular cavity. The Darcy law model was used to write the governing equations and they were solved using a finite difference method. Results are presented by streamlines, isotherms, mean and local Nusselt numbers for the different parameters such as the Rayleigh number, thermal conductivity ratio, and height and width of the body. It was observed that both height and width of the body and thermal conductivity ratio play an important role on heat and fluid flow inside the cavity.
机译:进行了一项数值研究,以检查在具有定心导体的多孔三角形外壳中自然对流引起的传热和流体流动。身体的中心位于直角三角形空腔的重心上。用达西定律模型写控制方程,并用有限差分法求解。结果由流线,等温线,均值和局部Nusselt数表示,用于不同的参数,例如瑞利数,导热系数以及身体的高度和宽度。观察到,主体的高度和宽度以及导热率均对空腔内的热和流体流动起重要作用。

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