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Optimization of electrostatically actuated miniature compressors for electronics cooling

机译:用于电子冷却的静电驱动微型压缩机的优化

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摘要

This paper explores the feasibility of using electrostatically actuated diaphragm compressors in a miniature-scale refrigeration system for electronics cooling. A previously developed experimentally validated analytical model for the diaphragm compressor is used in conjunction with an optimization approach to determine the required dimensions for the compressor. The analysis reveals that the pressure rise and volume flow rate required for the electronics cooling application are not achieved using a single compressor because of material property limitations. A three-dimensional array of compressors is proposed instead with which the cooling requirements and the size restrictions for electronics cooling applications may be simultaneously satisfied.
机译:本文探讨了在微型制冷系统中使用静电驱动隔膜压缩机进行电子冷却的可行性。以前开发的经过实验验证的隔膜压缩机分析模型与优化方法结合使用,以确定压缩机所需的尺寸。分析表明,由于材料特性的限制,使用单个压缩机无法实现电子冷却应用所需的压力上升和体积流量。替代地,提出了三维压缩机阵列,利用其可以同时满足电子设备冷却应用的冷却要求和尺寸限制。

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