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An optimal design problem in determining non-uniform fin heights and widths for an impingement heat sink module

机译:确定冲击散热器模块的不均匀散热片高度和宽度时的最佳设计问题

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摘要

A three-dimensional optimal design problem is examined in this study using a general purpose commercial code (CFD-ACE+) and the Levenberg-Marquardt Method (LMM) to estimate the optimal shape of an impingement cooling heat sink using different design variables. In optimal heat sink design #1, the non-uniform fin widths are taken as the design variables, and in optimal heat sink design #2, the non-uniform fin widths and heights are chosen as the design variables. The objective of this study is to minimize the thermal resistance (Rth) of the fin array and to obtain the optimal dimensions of optimal heat sinks #1 and #2. The experimental results demonstrated that by utilizing the fabricated heat sinks and operating under the design condition Re = 5000, Rth can be decreased by 4.06% and Nu and COE can be increased by 4.23% and 4.20%, respectively, for optimal heat sink #1 compared to the original fin array. For optimal heat sink #2, Rth can be decreased by 10.53% and Nu and COE can be increased by 11.65% and 11.70%, respectively, compared to the original fin array. Consequently, the thermal performances of optimal impingement heat sinks can be greatly improved.
机译:在这项研究中,使用通用商业代码(CFD-ACE +)和Levenberg-Marquardt方法(LMM)研究了三维最佳设计问题,以使用不同的设计变量来估算冲击冷却散热器的最佳形状。在最佳散热器设计#1中,将不均匀的翅片宽度作为设计变量,在最佳散热器设计#2中,将不均匀的翅片宽度和高度作为设计变量。这项研究的目的是最小化鳍片阵列的热阻(Rth),并获得最佳散热器#1和#2的最佳尺寸。实验结果表明,通过使用装配好的散热器并在Re = 5000的设计条件下运行,对于最佳散热器#1,Rth可以降低4.06%,Nu和COE可以分别提高4.23%和4.20%。与原始鳍片阵列相比。与原始鳍片阵列相比,对于最佳的散热器2,Rth可以降低10.53%,Nu和COE可以分别提高11.65%和11.70%。因此,可以极大地改善最佳冲击散热器的热性能。

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