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Fourier Analysis-Based Evolutionary Multi-Objective Multiphysics Optimization of Liquid-Cooled Heat Sinks

机译:基于傅立叶分析的液冷散热器进化多目标多物理场优化

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Optimal heat dissipation in power modules can significantly increase their power density. Removing the generated heat is critical for capturing the benefits of advanced semiconductor materials and improving the reliability of the device operation. This article proposes a design optimization method for liquid-cooled heat sinks that use a Fourier analysis-based tool and an evolutionary optimization algorithm to optimize the heat sink geometry for specified objectives. The optimized heat sink geometry is then compared with state-of-the-art solutions in literature based on finite element analysis of different designs. The proposed methodology can develop complex geometries that outperform the conventional heat sink geometries.
机译:电源模块中的最佳散热可以显着提高其功率密度。除去产生的热量对于获取先进的半导体材料的益处并提高设备操作的可靠性至关重要。本文提出了一种针对液冷散热器的设计优化方法,该方法使用基于傅立叶分析的工具和一种演化优化算法来针对特定目标优化散热器的几何形状。然后,基于不同设计的有限元分析,将优化的散热器几何形状与文献中的最新解决方案进行比较。所提出的方法可以开发出优于常规散热器几何形状的复杂几何形状。

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