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Droplet-Based Microfluidic Thermal Management Methods for High Performance Electronic Devices

机译:基于液滴的高性能电子设备微流热管理方法

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摘要

Advanced thermal management methods have been the key issues for the rapid development of the electronic industry following Moore’s law. Droplet-based microfluidic cooling technologies are considered as promising solutions to conquer the major challenges of high heat flux removal and nonuniform temperature distribution in confined spaces for high performance electronic devices. In this paper, we review the state-of-the-art droplet-based microfluidic cooling methods in the literature, including the basic theory of electrocapillarity, cooling applications of continuous electrowetting (CEW), electrowetting (EW) and electrowetting-on-dielectric (EWOD), and jumping droplet microfluidic liquid handling methods. The droplet-based microfluidic cooling methods have shown an attractive capability of microscale liquid manipulation and a relatively high heat flux removal for hot spots. Recommendations are made for further research to develop advanced liquid coolant materials and the optimization of system operation parameters.
机译:遵循摩尔定律,先进的热管理方法已成为电子行业快速发展的关键问题。基于液滴的微流体冷却技术被认为是解决高性能电子设备在密闭空间中去除高热通量和温度分布不均匀的主要挑战的有前途的解决方案。在本文中,我们回顾了文献中基于液滴的最新微流冷却方法,包括电毛细管的基本理论,连续电润湿(CEW),电润湿(EW)和电介质上电润湿的冷却应用(EWOD)和跳跃液滴微流体处理方法。基于液滴的微流体冷却方法已显示出有吸引力的微尺度液体处理能力和相对较高的热点热通量去除率。为进一步研究开发先进的液体冷却剂材料和优化系统运行参数提供了建议。

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