受热钝体多面效应与受限区域内换热的计算研究

S. Hariharan, Amit Varakhedkar, Rajendran Senthil Kumar
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摘要

摘要随着技术的飞速发展,特别是计算机芯片的飞速发展,对高效热管理系统的需求日益增加。本文采用二维数值方法研究了在高受限流体域中加热圆柱体边数的影响。流量被限制在堵塞比为3的范围内。对雷诺数为50、100、150和200的层流进行了研究。选择六个气缸;正方形,五边形,六边形,圆形,十二边形和六-十六边形。采用ANSYS FLUENT 18软件进行仿真。采用SIMPLE算法求解Navier-Stokes方程。从压力和温度曲线、粘性阻力系数、压阻系数、总阻力系数、压力系数、斯特劳哈尔数和努塞尔数等方面研究了其流动和换热特性。随着边数的增加,在开始时观察到流动和传热特性的显著差异,但都慢慢地开始向圆柱体的特性收敛。与所有其他圆柱体相比,十二角形圆柱体平均表现出更好的流动和传热性能。关键词:各类圆柱总阻力系数strouhal数bernusselt数感谢SRM科学技术研究所机械工程系计算流体动力学实验室和产品开发实验室允许我们使用这些设备进行计算分析。披露声明作者未报告潜在的利益冲突。
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Effect of multiple sides of heated bluff body and heat transfer in a confined region: a computational study
AbstractThe rapid increase in technologies, especially computer chips, increases the demand for highly efficient thermal management systems. The present study carries out a two-dimensional numerical investigation on the effect of the number of sides of a heated cylinder in a highly confined fluid domain. The flow is confined to a blockage ratio of 3. The study is conducted for laminar flow with Reynolds numbers being 50, 100, 150 and 200. Six cylinders are chosen; Square, pentagon, hexagon, circle, dodecagon and hexa-decogan. The simulation is carried out using ANSYS FLUENT 18. SIMPLE algorithm is used to solve the Navier–Stokes equation. The flow and heat transfer characteristics are studied from pressure and temperature contour, viscous drag co-efficient, pressure-drag coefficient, total drag co-efficient, pressure co-efficient, Strouhal number and Nusselt number. As the number of sides increased, a significant difference in flow and heat transfer characteristics is observed at the starting, but all slowly started to converge toward the characteristics of the circular cylinder. The dodecagon cylinder shows better flow and heat transfer performance on average when compared to all the other cylinders.Keywords: Various types of cylinderstotal-drag coefficientStrouhal numberNusselt number AcknowledgementWe sincerely thank the Computational Fluid Dynamics Lab and Product Development Lab at the Department of Mechanical Engineering, SRM Institute of Science and Technology for allowing us to use the facilities for the computational analysis.Disclosure statementNo potential conflict of interest was reported by the authors.
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