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Fractal channel manifolds for microjet liquid-cooled heat sinks

机译:分形通道歧管,用于微喷射液冷散热器

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摘要

A parametric optimization of a novel hybrid configuration of liquid-cooled heat sinks is presented herein. Such a hybrid design encompasses a combination of channels and microjets for optimal performance of chip scale high-power density electronic packages. Fractal flow channel geometries were used to create variants consisting of 16, 32, and 64 channels and a corresponding number of microjets in the impingement cavity. In addition to the conventional coplanar setup, where channels and area enhancing features align with the main flow direction, an out-of-plane network of channels was created to allow for removal of the cooling fluid in the opposite direction of the impinging jets. The parametric analysis was performed via 3-D CFD simulations to investigate the tradeoff between hydraulic and thermal resistances in jet cooling systems. The thermal resistance of the heat sinks was estimated and the pressure losses were calculated for every design. Observations of the flow patterns were used to inform on the optimization process of the architecture of the flow channels. A metric able to merge thermal and hydraulic performance was defined, such that the thermo-fluid characteristics of a liquid cooled heat sink are represented using one parameter. The utilization of this parameter led to a unique performance assessment of the proposed hybrid liquid-cooled heat sinks and allowed to identify an optimum design, which yields the lowest thermal resistance with minimum pumping power input. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了液冷散热器的新型混合配置的参数优化。这种混合设计包括通道和微喷射器的组合,以实现芯片级高功率密度电子封装的最佳性能。分形流动通道的几何形状用于创建由16个,32个和64个通道组成的变体,并在撞击腔中创建相应数量的微喷射器。除了常规的共面设置(其中通道和面积增强特征与主流方向对齐)之外,还创建了通道外平面网络,以允许沿撞击射流的相反方向除去冷却流体。通过3-D CFD模拟进行参数分析,以研究射流冷却系统中水力和热阻之间的权衡。估算散热器的热阻,并为每种设计计算压力损失。对流动模式的观察被用来告知流动通道结构的优化过程。定义了一种能够融合热力和水力性能的指标,从而使用一个参数来表示液冷散热器的热流体特性。利用该参数可以对所提议的混合液冷散热器进行独特的性能评估,并可以确定最佳设计,从而在最低泵浦功率输入的情况下产生最低的热阻。 (C)2019 Elsevier Ltd.保留所有权利。

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