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Enhancement of forced convection heat transfer on LED by ionic wind

机译:通过离子风引起强制对流热传递的增强

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The main purpose of this study is to investigate the heat transfer enhancement provided by ionic wind on LED. Ionic wind is applied onto a bulk flow in order to distort the boundary layer in an effort to increase the cooling effect on the LED. The ionic wind generator used in this case involved a stainless steel needle acting as emitter electrode while a copper tape is used as collector electrode. Both electrodes are placed in parallel to each other. An axial fan is placed at the inlet of a flow channel to provide the bulk flow. A maximum heat transfer enhancement of 38 % by ionic wind is recorded at applied voltage of 16.3 kV as compared to the case without ionic wind. The heat transfer enhancement is found to be independent of the bulk flow velocities and the ratio of heat transfer coefficient over total consumption is found to be at 63.75 W/mK per unit power at the maximum heat transfer enhancement.
机译:本研究的主要目的是探讨由离子风提供的热传递增强。将离子风施加到体流上,以便扭曲边界层以增加对LED的冷却效果。在这种情况下使用的离子风力发生器涉及用作发射电极的不锈钢针,而铜带用作集电极电极。两个电极彼此平行地放置。轴向风扇放置在流动通道的入口处,以提供散装流量。与没有离子风的情况相比,通过离子风在施加电压为16.3kV的施加电压下记录38 %的最大热传递增强。发现热传递增强与散装流速无关,并且在最大传热增强处,发现总消耗量的传热系数与总消耗量的比率为63.75W / mk。

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