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HIGH CAPACITY, COMPACT HYBRID AIR COOLING SYSTEM

机译:高容量,紧凑型混合空气冷却系统

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摘要

This paper presents an innovative design for a high heat flux cooling system. The system's compact package includes a forced thermal spreader with a small pump, a manifold minichannel air heat sink, and an air mover. The forced thermal spreader can greatly reduce spreading thermal resistance, and bring uniform temperature distribution on a top surface - which will enhance the heat dissipation performance of the attached heat sink. The manifold minichannel air heat sink has low thermal resistance and a typical pressure drop. Most of the heat is transported from the chip to the liquid inside the forced thermal spreader. The liquid spreads the heat to the surface of the heat sink by circulating in the microchannels and minichannels inside the spreader. Some heat can also be transferred to the top surface via pure conduction from the mini- and micro-fins. Finally, the heat is transferred into the ambient environment by the uniquely-designed manifold heat sink. The system provides the cooling advantages of both liquid and air. Theoretical analysis and CFD simulation show this system can dissipate 500 W/cm{sup}2 of heat with a temperature rise of 50°C above ambient, while it features a package that is small in size and light in weight.
机译:本文介绍了高热通量冷却系统的创新设计。该系统的紧凑型封装包括带有小泵的强制热吊具,歧管百分之一道空气散热器和空气动画。强制热涂布器可以大大减少扩散热阻,并在顶面上带来均匀的温度分布 - 这将提高附着散热器的散热性能。歧管迷你空气散热器具有低热电阻和典型的压降。大多数热量从芯片输送到强制热涂布器内的液体。液体通过在吊具内部的微通道和较小的轿厢中循环来将热量传播到散热器的表面。一些热量也可以通过纯净和微鳍片通过纯传导转移到顶表面。最后,通过独特设计的歧管散热器将热量转移到环境环境中。该系统提供液体和空气的冷却优势。理论分析和CFD仿真显示该系统可以在温度上升50°C的温度上升500°C的热量,而其特征在于尺寸和重量轻的封装。

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