Genetic algorithm design of a 3D printed heat sink

Tong Wu, B. Ozpineci, C. Ayers
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引用次数: 17

Abstract

In this paper, a genetic algorithm- (GA-) based approach is discussed for designing heat sinks based on total heat generation and dissipation for a pre-specified size and shape. This approach combines random iteration processes and genetic algorithms with finite element analysis (FEA) to design the optimized heat sink. With an approach that prefers “survival of the fittest”, a more powerful heat sink can be designed which can cool power electronics more efficiently. Some of the resulting designs can only be 3D printed due to their complexity. In addition to describing the methodology, this paper also includes comparisons of different cases to evaluate the performance of the newly designed heat sink compared to commercially available heat sinks.
3D打印散热器的遗传算法设计
本文讨论了一种基于遗传算法的散热器设计方法,该方法基于总发热量和总散热量来设计给定尺寸和形状的散热器。该方法将随机迭代过程、遗传算法与有限元分析相结合,对散热器进行优化设计。采用“适者生存”的方法,可以设计出更强大的散热器,从而更有效地冷却电力电子设备。由于其复杂性,一些最终设计只能3D打印。除了描述方法之外,本文还包括不同情况的比较,以评估新设计的散热器与市售散热器的性能。
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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