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Localized Heating Effects of Liquid Based on SAW Streaming

机译:基于锯流的液体局部加热效应

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When a liquid droplet is placed on a surface acoustic wave (SAW) propagation surface, a longitudinal wave is radiated into the liquid and the liquid begins to stream, jet, and atomize. This phenomenon is known as SAW streaming. In this paper, we describe experimental results concerning the temperature of a thin liquid layer and liquid droplet during SAW generation. The results reveal that the temperature of the liquid is a function of the SAW amplitude, which is determined by the applied voltage. This means that the liquid temperature can be controlled by the applied voltage. Rapid rise and fall times are realized by the SAW. Moreover, the influence of viscosity with respect to temperature is discussed. Due to viscous damping of the radiated longitudinal wave, temperature of a high-viscosity liquid is higher than that of a low-viscosity liquid at the same applied voltage. We conclude that a novel micro-liquid heating system can be realized using the SAW device.
机译:当将液滴放置在表面声波(SAW)传播表面上时,纵向波被辐射到液体中,液体开始流动,喷射和雾化。这种现象被称为锯流。在本文中,我们描述了关于锯生成期间薄液层和液滴温度的实验结果。结果表明,液体的温度是锯幅度的函数,其由施加的电压确定。这意味着可以通过施加的电压控制液体温度。锯的快速上升和秋季。此外,讨论了粘度相对于温度的影响。由于辐射的纵向波的粘性阻尼,高粘度液体的温度高于相同施加电压的低粘度液体的温度。我们得出结论,可以使用锯装置实现一种新型微液加热系统。

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