Optimal structure of a water cooled pin fin heat sink by Taguchi method depending on various requirements

IF 1.2 4区 工程技术 Q3 THERMODYNAMICS
H. Matsushima, A. Almerbati
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引用次数: 1

Abstract

Prediction and optimization of water-cooling performance of a pin fin heat sink with variable pin diameters along a flow direction is attempted. We have developed a simple analyze procedure for pin fin heat sink that enables to evaluate the row-by-row performance when diameters of fins are morphed along a flow direction. Validity of the procedure is confirmed for uniform and non-uniform pin diameter cases. The Taguchi method is applied to an optimization method. Optimal design among the considered cases, in which the thermal resistance is minimum, corresponds to the configuration where the pin diameter equals 3 mm constructed from copper. This holds for constant inlet velocity and constant pumping power cases. Optimum structure of heat sink considering simultaneous parameters (minimum thermal resistance, pressure drop and mass) occurs when the heat sink is built from aluminum with a pin diameter of 2 mm. These three parameters influence the design of the heat sink. For instance, when the thermal resistance and the pressure drop are significant, optimum structure is a “wing like shape” with larger pin diameter near the central rows and copper as material. However, when the thermal resistance and the heat sink mass are of interest, the optimum structure associated with the larger pin diameter constructed from aluminum. Also, when we consider the pressure drop and heat sink mass, the optimum design is the one where the pin diameter is 1 mm built from aluminum.
根据不同要求,采用田口法对水冷针翅片散热器进行结构优化
本文尝试对变针径针翅散热器沿流动方向的水冷性能进行预测和优化。我们已经开发了一个简单的分析程序,可以评估当翅片直径沿流动方向变形时的逐行性能。对于均匀和非均匀销径情况,验证了该方法的有效性。将田口法应用于优化方法。在考虑的情况下,热阻最小的最佳设计对应于引脚直径等于3mm的铜结构。这适用于恒定入口速度和恒定泵送功率的情况。考虑同时参数(最小热阻、压降和质量)的散热器的最佳结构发生在引脚直径为2mm的铝制散热器上。这三个参数影响散热器的设计。例如,当热阻和压降较大时,最优结构为靠近中心排的引脚直径较大的“翼状结构”,以铜为材料。然而,当热阻和散热器质量感兴趣时,最佳结构与较大的引脚直径有关,由铝制成。此外,当我们考虑压降和散热器质量时,最佳设计是由铝制成的引脚直径为1毫米的设计。
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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来源期刊
CiteScore
2.30
自引率
8.30%
发文量
0
审稿时长
5 months
期刊介绍: JTST covers a variety of fields in thermal engineering including heat and mass transfer, thermodynamics, combustion, bio-heat transfer, micro- and macro-scale transport phenomena and practical thermal problems in industrial applications.
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