交错和内联针翅散热器的热流体分析

A. Dvinsky, A. Bar-Cohen, M. Strelets
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引用次数: 20

摘要

对交错式和直列式针翅散热器的相对热效率和水动力效率进行了数值研究。从冷却效率(在相同流量条件下)的角度来看,交错式设计优于直列式设计的优势是显而易见的。然而,交错设计有较大的气流阻力,导致通过散热器的气流减少,热效率降低。在本研究中,我们使用商用CFD软件Coolit分析了两个样品针翅片散热器。散热器被放置在具有隔热壁的矩形管道的底壁上。热源位于散热器的底部。该工艺的主要参数是入口速度和由散热器到管道壁的距离定义的覆盖范围。两者都是不同的,以解释广泛的流动条件。对热沉的最大温升和压降进行了监测。本研究的主要结论是,除了全覆盖散热器外,直列设计的散热性能优于交错设计。另一个发现是,在给定的几何形状中,散热器上的无因次压降几乎是恒定的,这表明粘性阻力很小。最后,在计算过程中得到的三维流态和温度场,为深入了解复杂的散热器气流和传热现象提供了依据,并提出了改进设计的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermofluid analysis of staggered and inline pin fin heat sinks
A numerical study is performed of relative thermal and hydrodynamic efficiency of staggered and inline pin fin heat sinks. Advantages of the staggered over the inline design from the standpoint of cooling efficiency (under the same flow conditions) are evident. However, the staggered design has greater airflow resistance, leading to less airflow through the heat sink and a decrease in thermal efficiency. In this study we analyzed two sample pin fin heat sinks using the commercial CFD software Coolit. The heat sinks were placed on the bottom wall of a rectangular duct with thermally insulated walls. A heat source was located at the base of the heat sink. The major parameters of the process were the inlet velocity and the extent of shrouding defined by the distance from the heat sink to the duct walls. Both were varied to account for a wide range of flow conditions. The maximum temperature rise and the pressure drop over the heat sink were monitored. The main conclusion of this study was that the inline design is thermally superior to the staggered design for all but the fully-shrouded heat sinks. Another finding is that in a given geometry the non-dimensional pressure drop over a heat sink is almost constant, which indicates small viscous drag. Finally, the three-dimensional flow patterns and temperature fields obtained in the course of computations give insight into the complex heat sink airflow and heat transfer phenomena and suggest design improvements.
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