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Numerical Investigation of Spray Cooling-Based Thermal Management of Extreme Power Densities using Anisotropic Composite Heat Spreaders

机译:各向异性复合材料散热器基于喷雾冷却的极限功率密度热管理数值研究

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Recent advancements in high thermal conductivity materials offer new possibilities in heat spreader designs that can tackle near-junction hotspot/focal spot thermal management in tandem with the active cooling methods. This study aims to characterize two-phase spray cooling performance utilizing an advanced composite heat spreader design that implements isotropic and anisotropic material (i.e., CVD diamond, graphite, and pyrolytic graphite) layers near the heat source to laterally spread the heat flux to manageable levels towards achieving reliable and efficient operation of ultra-high heat flux (>1,000 W/cm2) devices. The study incorporates experimentally obtained spray cooling performance data (particularly the heat transfer coefficient, as a key parameter) with alcohol/water binary mixtures, and numerically investigates the capabilities of the described composite heat spreader for thermal management of a simulated 1 mm2 heat source. A thermal management technology that integrates the capabilities of two-phase spray cooling with the advanced heat spreaders would achieve a novel cooling method, alleviate thermal limits to the advancement of the most challenging power electronics applications involving ultra-high heat fluxes, and provide improved thermal performance and design (with reduced size, weight, and power).
机译:高导热率材料的最新进展为散热器设计提供了新的可能性,该散热器设计可以与主动冷却方法一道解决近结热点/焦点热管理问题。这项研究旨在利用先进的复合散热器设计来表征两相喷雾冷却性能,该设计在热源附近实施各向同性和各向异性的材料(例如CVD金刚石,石墨和热解石墨)层,以将热通量横向分布到可控制的水平致力于实现超高热通量(> 1,000 W / cm)的可靠和高效运行 2 ) 设备。该研究结合了通过实验获得的喷雾冷却性能数据(尤其是传热系数,作为关键参数)与酒精/水二元混合物的关系,并通过数值方法研究了所述复合散热器在模拟1毫米热管理方面的能力。 2 热源。将两相喷雾冷却功能与先进的散热器集成在一起的热管理技术将实现一种新颖的冷却方法,减轻热量限制,以推动涉及超高热通量的最具挑战性的电力电子应用的发展,并提供改进的热性能。性能和设计(减小尺寸,重量和功率)。

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