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Layered porous media architecture for maximal cooling

机译:分层多孔介质架构,可最大程度地冷却

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In this paper, we address the fundamental problem of how to arrange fluid flow and solid material for minimal thermal resistance. A heat-generating board is cooled by a stack of porous layers through which a coolant flows. The stream is generated by a fixed pressure drop. The problem consists in determining the optimal porosity and material of each layer for minimizing the hot spot temperature (thermal resistance), under global mass and cost constraints. We combine a genetic algorithms (GA) toolbox with a finite volume program to optimize the design. The shape and structure of the system emerge from the global optimization, under global constraints. The optimal material to use in each layer is determined by the GA - not assumed - and is chosen from a database of four materials. The GA eliminates layers that do not contribute to the overall performance and therefore optimizes the size of the stacking. The results indicate that more solid material should be used closer to the hot plate (non-uniform distribution). Several nearly optimal configurations are found in the design space.
机译:在本文中,我们解决了基本的问题,即如何安排流体流动和固体材料以最小化热阻。发热板由一堆多孔层冷却,冷却剂流过该多孔层。该流由固定的压降产生。问题在于在全局质量和成本约束下,确定每层的最佳孔隙率和材料,以使热点温度(热阻)最小。我们将遗传算法(GA)工具箱与有限体积程序结合在一起以优化设计。在全局约束下,系统的形状和结构来自全局优化。在每一层中使用的最佳材料是由GA确定的(未假定),并且是从四种材料的数据库中选择的。 GA消除了不会影响整体性能的层,因此优化了堆叠的尺寸。结果表明,应在靠近热板的地方使用更多的固体材料(分布不均匀)。在设计空间中发现了几种几乎最佳的配置。

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