首页> 外文会议>IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >EVAPORATION-ENHANCED, DYNAMICALLY-ADAPTIVE AIR (GAS)-COOLED HEAT SINK FOR THERMAL MANAGEMENT OF HIGH HEAT DISSIPATION DEVICES
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EVAPORATION-ENHANCED, DYNAMICALLY-ADAPTIVE AIR (GAS)-COOLED HEAT SINK FOR THERMAL MANAGEMENT OF HIGH HEAT DISSIPATION DEVICES

机译:蒸发增强的动态自适应空气(气体) - 用于高散热装置的热管理的散热器

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摘要

To address the thermal management challenges associated with high power dissipation devices, we describe a novel hybrid thermal management device, which enables significant enhancement of conventional air-cooled heat sinks using on-demand and spatially controlled droplet/jet impingement evaporative cooling. The device architecture modifies an air (gas)-cooled heat sink by adding a multiplexed, planar MEMS (microelectromechanical system)-based droplet ejector array as a capping surface of the finned structure of a conventional heat sink. Such a minimal modification of the heat sink allows one to exploit high heat flux evaporative cooling by virtue of delivering streams of liquid droplets or jets to the highly thermally conducting, heat spreading surface of the heat sink fins. The phase change associated with liquid droplet evaporation results in significant (~50%) enhancement of the dissipated thermal load, beyond what could be achieved by using air (gas) cooling alone. Finally, among the additional key attractive features of the described technology is its ease of implementation (i.e., modification of commercially available heat sinks), paving the way to power-efficient, low-cost thermal management of high power dissipation devices.
机译:为了解决与高功耗设备相关的热管理挑战,我们描述了一种新型混合热管理装置,其能够使用按需和空间控制的液滴/喷射冲击蒸发冷却来显着提高传统的风冷散热器。装置架构通过添加多路复用的平面MEMS(微机电系统)的液滴喷射器阵列来改变空气(气体) - 冷却散热器作为传统散热器的翅片结构的覆盖表面。散热器的这种最小变换允许一个通过将液滴或喷射的速度输送到高热导电,散热片的高度热传导,散热表面来利用高热通量蒸发冷却。与液滴蒸发相关的相变导致耗散热负荷的显着(〜50%),超出单独使用空气(气体)冷却可以实现的。最后,所描述的技术的额外关键有吸引力特征是其易于实现(即,用于改造市售的散热器),铺平了高功耗设备的高功率,低成本的热管理方式。

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