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Experimental study on flow and heat transfer characteristics of synthetic jet driven by piezoelectric actuator

机译:压电作动器驱动合成射流的流动和传热特性的实验研究

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摘要

To investigate the flow and heat transfer characteristics of a synthetic jet driven by piezoelectric actuator, experimental investigation utilizing particle image velocimetry, hot-wire anemometer and infrared camera was carried out. The results show that: (1) At the jet orifice exit, pairs of vortexes are generated, broken down and merged together periodically, forming a steady jet within a several slot width from distance near the orifice exit. And during the development, the synthetic jet spreads rapidly along the minor axis direction of the orifice. While along the major axis direction, the synthetic jet contracts firstly and then spreads slowly. (2) Excitation frequency forced on the actuator has a great effect on the synthetic jet flow field. There are two resonance frequencies at which the mean velocity and vorticity of the synthetic jet are maximized, especially at the higher resonance frequency. The resonance frequency values obtained by the experiment are lower than the theoretical values. (3) Similarly to the common jet impingement, the convective heat transfer coefficients at the target surface impinged by the synthetic jet also take on up-down tendency varying with the jet-to-surface spacing increment. But the jet-to-surface spacing ratio for optimum cooling achievement is greater and the cooling action region is wider than the former, indicating that the synthetic jet introduces a stronger entrainment and more vigorous penetration in the surrounding fluid.
机译:为了研究压电致动器驱动的合成射流的流动和传热特性,利用粒子图像测速仪,热线风速仪和红外热像仪进行了实验研究。结果表明:(1)在喷孔出口处,周期性产生,分解并融合成对的涡流,在距喷孔出口附近的几个缝隙宽度内形成稳定的喷流。在开发过程中,合成射流沿孔的短轴方向迅速扩散。当沿着主轴方向时,合成射流首先收缩,然后缓慢扩散。 (2)激励器上的激励频率对合成射流流场有很大影响。在两个共振频率处,合成射流的平均速度和涡度最大,尤其是在较高共振频率处。通过实验获得的共振频率值低于理论值。 (3)与普通射流撞击相似,合成射流撞击目标表面的对流传热系数也呈现出随射流到表面间距增加而变化的上下趋势。但是,实现最佳冷却效果的射流与表面的间距比更大,并且冷却作用区域比前者宽,这表明合成射流在周围流体中引入了更强的夹带和更强的渗透性。

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