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Heat transfer comparison between a vertical rectangular cavity and an isosceles right-angled triangular cavity of equal cross-sectional area

机译:垂直矩形腔与等腰直角三角形腔横截面积相等时的传热比较

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摘要

This paper addresses the heat transfer performance of natural convection flows in three different, (but related) cavities in the form of: a square, isosceles right-angled triangle, and vertical rectangle with aspect ratio 2:1. The isosceles right-angled triangular cavity is derived from a square cavity when cut in half diagonally, whereas the vertical rectangular cavity is derived from a square cavity when cut in half vertically. In the three cavities, the left vertical wall is the common wall heated. The buoyant air flow is characterized by height-based Rayleigh numbers ranging from a conduction-dominant to up to 106 for the laminar natural convection regime. Employing the finite volume method, the velocity and temperature fields as well as the mean convective coefficients evaluated at the common heated vertical wall are numerically determined for the isosceles right-angled triangular cavity. For this cavity, flow streamlines and temperature contours are presented in graphical form and some numerical results are validated against published experimental measurements. A one-to-one comparison for the heat transfer performance of the three interconnected cavities is reported in tabulated form.
机译:本文讨论了三种不同(但相关)腔体中自然对流的传热性能,它们的形式为:正方形,等腰直角三角形和纵横比为2:1的垂直矩形。等腰直角三角形腔在对角切成两半时由正方形腔衍生,而垂直矩形腔在垂直切成两半时从正方形腔衍生。在三个腔中,左垂直壁是加热的公共壁。浮力气流的特征是基于层的自然对流方式的基于高度的瑞利数在传导主导的范围内可达106。采用有限体积法,对等腰直角三角形空腔在数值上确定了在共同加热的垂直壁上评估的速度和温度场以及平均对流系数。对于该腔体,以图形形式显示了流线和温度轮廓,并根据已发布的实验测量结果验证了一些数值结果。以表格形式报告了三个相互连接的型腔的传热性能的一对一比较。

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