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Measurement and prediction of the cooling characteristics of a generalized vibrating piezoelectric fan

机译:广义振动压电风扇冷却特性的测量与预测

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摘要

Piezoelectric fans are thin elastic beams whose vibratory motion is actuated by means of a piezoelectric material bonded to the beam. These fans have found use as a means to enhance convective heat transfer while requiring only small amounts of power. The objective of the present work is to quantify the influence of each operational parameter and its relative impact on thermal performance. Of particular interest are the vibration frequency and amplitude as well as the geometry of the vibrating cantilever beam. The experimental setup consists of a piezoelectric fan mounted normal to a constant heat flux surface. Temperature contours on this surface captured via an infrared camera are used to extract the forced convection coefficient due to the fluid motion generated from the fan. Different fans, with fundamental resonance frequencies ranging from 60 to 250 Hz, are considered. Results show that the performance of the fans is maximized at a particular value of the gap between the fan tip and the heated surface. It is found that when a fan operates at this optimum gap, the heat transfer rate is dependent only on the frequency and amplitude of oscillation. Correlations based on appropriately defined dimensionless parameters are developed and found to successfully predict the thermal performance across the entire range of fan dimensions, vibration frequency and amplitude. An understanding of the dependence of thermal performance on the governing variables allows for improved design of piezoelectric fans as a method of enhancing heat transfer.
机译:压电风扇是细的弹性梁,其振动运动是通过粘结到梁上的压电材料来驱动的。已经发现这些风扇用作增强对流热传递同时仅需要少量功率的手段。本工作的目的是量化每个操作参数的影响及其对热性能的相对影响。特别感兴趣的是振动频率和振幅以及悬臂梁的几何形状。实验装置由垂直于恒定热通量表面安装的压电风扇组成。通过红外摄像机捕获的该表面上的温度轮廓用于提取由于风扇产生的流体运动而产生的强制对流系数。考虑了具有60至250 Hz基本共振频率的不同风扇。结果表明,在风扇尖端和受热表面之间的特定间隙值下,风扇的性能达到了最大化。已经发现,当风扇以该最佳间隙运行时,传热速率仅取决于振荡的频率和幅度。基于适当定义的无量纲参数的相关性得到开发并发现,可以成功预测整个风扇尺寸,振动频率和振幅范围内的热性能。对热性能对控制变量的依赖性的理解允许改进压电风扇的设计,作为增强传热的方法。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2009年第20期|4470-4478|共9页
  • 作者单位

    Cooling Technologies Research Center, School of Mechanical Engineering and Birck Nanocechnology Center, Purdue University, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

    Cooling Technologies Research Center, School of Mechanical Engineering and Birck Nanocechnology Center, Purdue University, 585 Purdue Mall, West Lafayette, IN 47907-2088, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    piezoelectric fans; vibrating cantilevers; heat transfer enhancement;

    机译:压电风扇振动悬臂;传热增强;

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