首页> 外文会议>ASME/JSME thermal engineering joint conference >OPTIMIZED IONIC WIND-BASED COOLING MICROFABRICATED DEVICES FOR IMPROVING A MEASURED COEFFICIENT OF PERFORMANCE
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OPTIMIZED IONIC WIND-BASED COOLING MICROFABRICATED DEVICES FOR IMPROVING A MEASURED COEFFICIENT OF PERFORMANCE

机译:优化的离子风力基冷却微制坯装置,用于提高测量的性能系数

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This work is a continuation of previous investigations aimed at developing an innovative microfabricated air-cooling technology that employs an electrohydrodynamic corona discharge (i.e. ionic wind pump) [1], [2]. This technology enables the miniaturization of cooling systems for next generation electronics. Our single ionic wind pump element consists of two parallel collecting electrodes between which a single emitting tip is positioned. Two-dimensional (2-D) and three-dimensional (3-D) simulations using COMSOL Multiphysics~(TM) are additionally employed to predict the temperature distribution, the flow field, and the heat removal capacity of the device in operation. One such model utilizes a small gap between collector and emitter electrodes and demonstrates an improvement in the COP (coefficient of performance) of a single device. Comparisons are made with experimental temperature data on an actual device. The purpose of this work is therefore to optimize the performance of a single microfabricated ionic wind pump to enable the development of an array of these elements for use in larger-scale heat transfer applications.
机译:这项工作是旨在开发一个创新的微制造的空气冷却技术,其采用电流体动力的电晕放电之前的调查(即离子风泵)[1],[2]的延续。这种技术能够使冷却系统为下一代电子产品的小型化。我们的单个离子风泵元件由两个平行的收集电极组成,其中单个发光尖端位于其之间。使用COMSOL Multiphysics软件〜(TM)的二维(2-d)和三维(3-d)模拟另外采用预测的温度分布中,流场,并且在操作所述装置的热去除能力。一个这样的模型利用集电极和发射极电极之间的小间隙和演示的单个设备中的COP的改善(性能系数)。比较与在实际设备上的实验温度数据制成。因此本工作的目的是优化的单个微制造的离子风泵的性能,以使这些元件在较大规模的传热应用的阵列的发展。

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