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An investigation into flow and heat transfer for a slot impinging synthetic jet

机译:狭缝撞击合成射流的流动与传热研究

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According to the latest trends in miniature consumer and military electronics, there is a need for compact cooling solutions to meet performance requirements at compact volumes. Successful technology must feature a thin profile and a small footprint area, while still removing a significant amount of heat dissipation. Impinging synthetic jets driven by a piezoelectric membrane are a promising method for cooling small-scale electronics. In this paper, we explore the thermal response of a miniature synthetic jet impinging upon a vertical heater. In addition, we study the local flow field using the particle image velocimetry (PIV) technique to couple heat transfer with fluid dynamics. Heat transfer results show that the maximum cooling performance occurs with a jet-to-surface spacing of 5 ≤ H/D_h ≤ 10, which is associated with the flow consisting of coherent vortex structures. There is a degradation of heat transfer for closer jet-to-surface spacings, such as H/D_h = 2. This was due to the incomplete growth of the vortices, along with re-entrainment of warm air from the impinging plate back into the jet flow. There was also some warm air sucked back into the jet during the suction phase of the synthetic jet. For a fixed value of Reynolds number, cooling was improved at high Stokes numbers, but with a reduced coefficient of performance.
机译:根据微型消费电子和军用电子产品的最新趋势,需要紧凑的冷却解决方案,以满足小体积的性能要求。成功的技术必须具有纤薄的外形和较小的占地面积,同时仍要消除大量的散热。撞击由压电膜驱动的合成射流是一种用于冷却小型电子设备的有前途的方法。在本文中,我们探索了撞击垂直加热器的微型合成射流的热响应。此外,我们使用粒子图像测速技术(PIV)将传热与流体动力学耦合起来研究局部流场。传热结果表明,当射流与表面的间距为5≤H / D_h≤10时,会产生最大的冷却性能,这与由相干涡流结构组成的流动有关。对于更近的射流到表面间距,例如H / D_h = 2,传热会降低。这是由于旋涡的不完全生长,以及热空气从撞击板上重新夹带回到了空气中。射流。在合成射流的吸入阶段,还有一些暖空气被吸回到射流中。对于雷诺数的固定值,在高斯托克斯数下冷却得到改善,但性能系数降低。

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