圆柱与受热竖板交界处自由对流换热的实验与数值研究

H. Malah, Y. Chumakov
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引用次数: 1

摘要

本文研究了圆柱对自由对流换热三维特性的影响。圆柱体水平安装在加热的垂直板上,被归类为高纵横比障碍物,即圆柱体的高度与其直径相当。所得结果适用于层流流态。此外,在数值研究中,控制微分方程在格拉什夫数= 3× 10附近求解。为了说明温度梯度高的区域,流动温度用无因次等高线和图表表示。在柱体上游的近交界区,通过将传热系数描述为指定点的温度梯度,考察了柱体放置对传热率的影响。正如预期的那样,浮力诱导的换热系数值在上游圆柱体交界处增加。传热系数的最大值出现在研究区域的对称面上,与马蹄涡系统的核心位置相对应。最后,通过数值与实验结果的偏差计算和实验方法的不确定性分析,证明了数值与实验方法的有效性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental and Numerical Study of Free Convection Heat Transfer Around the Junction of Circular Cylinder and Heated Vertical Plate
The present study investigates the effects of a circular cylinder on the three-dimensional characteristics of free convective heat transfer. The circular cylinder is mounted horizontally on a heated vertical plate and is categorized as high aspect ratio obstacle, which means the height of cylinder is comparable to its diameter. The obtained results are provided for the laminar flow regime. In addition, during numerical study the governing differential equations are solved around the Grashof number equals to 3× 10. In order to illustrated the regions of high gradients of temperature, the flow temperature is shown in terms of non-dimensional contours and diagrams. At the near junction region in upstream of cylinder, by description of heat transfer coefficients represented to the temperature gradients at intended points, the effects of cylinder emplacement on the heat transfer rate is surveyed. As expected, the value of the buoyancy-induced heat transfer coefficient increases at the cylinder junction in the upstream side. The maximum value of heat transfer coefficient is seen at the symmetry plane of study domain, which is corresponded to the location of horseshoe vortex system core. Finally, by deviation calculating between numerical and experimental results also by analysis of the experimental method uncertainty the validity and reliability of numerical and experimental approaches are proved.
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