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首页> 外文期刊>Journal of Electrostatics >Performance and flow characteristics of miniature EHD air blowers for thermal management applications
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Performance and flow characteristics of miniature EHD air blowers for thermal management applications

机译:微型EHD气鼓用于热管理应用的性能和流量特性

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Electrohydrodynamic (EHD) air blowers are receiving increasing attention as a thermal management cooling solution to overcome the restrictions of traditional rotary cooling systems used in small-scale consumer electronics. In this work, the performance and flow pattern characteristics of miniature EHD air blowers are evaluated for practical convective heat transfer applications, based on device size, operating voltage and power, and generated flow rate. For a range of blower heights up to 10 mm, two-dimensional (2D) and three-dimensional (3D) numerical models of a wire-to-plane EHD channel configuration are developed and validated against previous experimental data. Investigation of the influence of blower sidewalls, based on width parameter, on flow characteristics reveals that the 2D simulations for short and wide blower domains are valid to predict the generated flow rates effectively compared to that obtained by the means of 3D simulations. An optimized combined EHD blower is developed as a flow-controlled cooling system in thermal management applications, which minimizes the required operating voltages for specified flow rates. Comparisons against commercial rotary blowers demonstrate that the miniature EHD blowers are more competitive as cooling solutions for compact applications and extended heated surfaces based on transduction efficiency, blower size, flow production of uniform velocity profile, and power consumption.
机译:电液动力学(EHD)气鼓器正在接受越来越多的受到热管理冷却解决方案,以克服小规模消费电子产品中使用的传统旋转冷却系统的限制。在这项工作中,基于器件尺寸,工作电压和功率和产生的流速,评估了微型EHD鼓风机的性能和流量模式特性。对于多达10mm的鼓风机高度,二维(2D)和三维(3D)的线到平面EHD信道配置的数值模型进行开发并验证了先前的实验数据。基于宽度参数的鼓风机侧壁对流动特性的影响揭示了短宽和宽鼓风机域的2D模拟有效,以预测通过3D模拟方式获得的产生产生的流速。优化的组合EHD鼓风机是在热管理应用中的流量控制的冷却系统中开发的,这最小化了指定流速所需的工作电压。针对商业旋转鼓风机的比较表明,微型EHD鼓风机与用于紧凑型应用的冷却解决方案和基于转导效率,鼓风机尺寸,均匀速度曲线的流量产生和功耗的冷热表面更具竞争力。

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