首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >THERMAL BUBBLE DYNAMICS UNDER THE EFFECT OF ACOUSTIC VIBRATION
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THERMAL BUBBLE DYNAMICS UNDER THE EFFECT OF ACOUSTIC VIBRATION

机译:声振动作用下的热气泡动力学

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摘要

The effect of acoustic field on the dynamics of micro thermal bubble is investigated in this paper. The micro thermal bubbles were generated by a micro heater which was fabricated by standard Micro-Electro-Mechanical-System (MEMS) technology and integrated into a mini chamber. The acoustic field formed in the mini chamber was generated by a piezoelectric plate which was adhered on the top side of the chamber's wall. The dynamics and related heat transfer induced by the micro heater generated vapor bubble with and without the existing of acoustic field were characterized by a high speed photograph system and a micro temperature sensor. Through the experiments, it was found that in two different conditions, the temperature changing induced by the micro heater generated vapor bubble was significantly different. From the analysis of the high speed photograph results, the acoustic force induced micro thermal bubble movements, such as forcibly removing, collapsing and sweeping, were the main effects of acoustic enhanced boiling heat transfer. The experimental results and theoretical analysis were helpful for understanding of the mechanisms of acoustic enhanced boiling heat transfer and development of novel micro cooling devices.
机译:本文研究了声场对微热气泡动力学的影响。微型加热器产生的微气泡是由微型加热器产生的,该微型加热器通过标准的微型机电系统(MEMS)技术制成,并集成到微型腔室中。迷你腔中形成的声场是由一块压电板产生的,该压电板粘附在腔室壁的顶侧。由微型加热器引起的动力学和相关的热传递在有或没有声场的情况下产生蒸气泡,其特征在于高速照相系统和微型温度传感器。通过实验发现,在两种不同的条件下,由微加热器产生的蒸汽泡引起的温度变化是显着不同的。通过对高速摄影结果的分析,声波引起的微小热气泡运动(如强行去除,塌陷和吹扫)是声波增强沸腾传热的主要作用。实验结果和理论分析有助于理解声学增强沸腾传热的机理和新型微冷却装置的开发。

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