An investigation of magnet parameters on the performance of dual piezoelectric fans (DPF) in electronics cooling system

Abdul Razak Fadhilah, A. Robiah, Sarip Shamsul
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引用次数: 3

Abstract

Recently, piezoelectric fan has gained attention as potential active cooling method for electronics devices. Even though the piezoelectric requires high voltage, there are findings to overcome the shortcomings. Adding on a magnet at the tip of the piezoelectric fan to activate other magnetic passive fans is one of the methods to increase the total amplitude generated by the fans. This paper will discuss on the performance of integrated piezoelectric fan with passive fans (later refer to magnetic fans) to enhance the heat transfer in cooling system. A repulsive force produced by the magnets will cause the magnetic blades to oscillate together with the piezoelectric fan. The paper will focus on the optimization parameters of the magnets for selected dimension of piezoelectric fan. The parameters under investigation are the position of the magnet on the piezoelectric fan, number of magnets on each blades and orientation of blades with respect to adjacent blade. Results show that the magnet at middle location of extensive blade with double magnets generate the largest amplitude, 80% better than fan without magnet and for dual integrated piezoelectric fan with magnetic fan, radial orientation gives better result by 25%. By increasing the total amplitude, it shows a good agreement for positive heat transfer improvement compared to natural convection.
电子冷却系统中双压电风扇(DPF)磁体参数对其性能影响的研究
近年来,压电风扇作为一种潜在的电子器件主动冷却方式受到了人们的关注。尽管压电需要高电压,但也有一些发现可以克服这些缺点。在压电风扇顶端加装磁体来激活其他无源磁风扇,是提高风扇总振幅的方法之一。本文将讨论压电风扇与被动风扇(后简称磁风扇)的集成性能,以增强冷却系统的传热。磁铁产生的排斥力会使磁性叶片与压电风扇一起振荡。本文将重点研究压电风扇尺寸的磁体参数优化问题。所研究的参数是磁铁在压电风扇上的位置,每个叶片上的磁铁数量以及叶片相对于相邻叶片的方向。结果表明:双磁体宽叶片中间位置的磁体产生的振幅最大,比无磁体的效果好80%;双集成压电风扇与磁力风扇的径向效果好25%。通过增加总振幅,与自然对流相比,它显示出良好的正传热改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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