Thermal/fluid performance evaluation of serrated plate fin heat sinks

I. K. Shwaish, C. Amon, J. Murthy
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引用次数: 7

Abstract

Cooling of the electronics in people movers and other rail transportation systems require the removal of high power dissipation from the electronic equipment to ensure their long term reliability and performance. In this study, the thermal performance of in-service serrated plate fin heat sink is evaluated for a range of Reynolds number by means of fully three-dimensional numerical simulations of the air flow over the heat sink. The flow is considered to be turbulent and both hydrodynamically and thermally developing. Our computations yield local and global heat transfer and flow parameters such as temperature distribution in the fin, heat transfer coefficient, Nusselt number, pressure drop, and the maximum temperature of the heat sink. The results point to the directions for optimizing the heat sink performance. Hence, variations of design parameters around the existing configurations are investigated. These parameters are fin interruption and staggering, fin height, serration spacing, fin thickness and inter-fin spacing, fin base thickness, and clearance gap between the fin tips and the upper wall of the channel that encloses the heat sink. The computations yield the optimal designs of plate fin heat sinks for transportation applications.
锯齿板翅散热器的热/流体性能评价
在人员移动和其他轨道交通系统中的电子设备的冷却需要从电子设备中去除高功耗,以确保其长期可靠性和性能。在本研究中,采用全三维数值模拟的方法,对在役锯齿板翅片散热器进行了雷诺数范围内的热性能评估。这种流动被认为是湍流的,并且在流体动力学和热动力学上都在发展。我们的计算得出了局部和全局的传热和流动参数,如散热片中的温度分布、传热系数、努塞尔数、压降和散热器的最高温度。研究结果为优化散热器性能指明了方向。因此,围绕现有配置的设计参数的变化进行了研究。这些参数是翅片中断和交错,翅片高度,锯齿间距,翅片厚度和翅片间距,翅片底部厚度,以及翅片尖端与封闭散热器的通道上壁之间的间隙。计算结果为运输用板翅式散热器的优化设计提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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