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Performance assessment of density and level-set topology optimisation methods for three dimensional heat sink design

机译:三维散热器设计密度和水平集拓扑优化方法的性能评估

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摘要

In this paper, two most prevalent topological optimisation approaches namely Density and Level set method are applied to a three dimensional heat sink design problem. The relative performance of the two approaches is compared in terms of design quality, robustness and computational speed. The work is original as for the first time it demonstrates the relative advantages and disadvantages for each method when applied to a practical engineering problem. It is additionally novel in that it presents the design of a convectively cooled heat sink by solving full thermo-fluid equations for two different solid-fluid material sets. Further, results are validated using a separate computational fluid dynamics study with the optimised designs are compared against a standard pin-fin-based heat sink design. The results show that the Density method demonstrates better performance in terms of robustness and computational speed, while Level-set method yields a better quality design in terms of final objective value.
机译:在本文中,将两种最流行的拓扑优化方法,即密度和水平集方法应用于三维散热器设计问题。从设计质量,鲁棒性和计算速度方面比较了这两种方法的相对性能。这项工作是原创的,这是第一次证明了每种方法在应用于实际工程问题时的相对优缺点。另外,它是新颖的,它通过求解两个不同的固体流体材料组的完整热流体方程式,提出了对流冷却散热器的设计。此外,使用单独的计算流体动力学研究验证了结果,并将优化设计与基于标准针翅的散热器设计进行了比较。结果表明,密度方法在鲁棒性和计算速度方面表现出更好的性能,而水平集方法在最终目标值方面产生了更好的质量设计。

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