A Review Study of the Feasibility of Piezoelectric Fan Techniques for Cooling Electronic Components

Haider F. Jasim, Muneer A. Ismael
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Abstract

The electronic equipment industry has developed rapidly in recent years. The amount of heat emitted from such equipment is seriously increased. Increasing the temperature of the electronic devices degrades their performance and as a final result their failure. Therefore, the requirements for an effective cooling system have become more important than ever. One of the most important methods of heat dissipation that the researchers focused on is the use of piezoelectric fans (PE). The current study reviews most of the developments that have taken place since its discovery nearly 40 years ago and focused on reducing power consumption. Most of the improvements and developments have been focused on obtaining optimal designs for these piezoelectric fans, which are used in different applications. This review clarifies the foundations and concepts of designing piezoelectric fans by comparing the data presented in previous studies. Furthermore, in the last ten years, numerical simulation has entered as an effective tool in predicting the optimal design of piezoelectric fans. The design of piezoelectric fans is in two forms, either single or multiple. The single fan system is used within a limited range of applications, as large cooling systems cannot be replaced by it. Therefore, the cooling system consisting of multiple piezoelectric fans is promising as a unique solution to effectively dissipate heat in electronic devices. The percentage of experimental studies is about 32 % while the studies of CFD is about 21 %, and the combined one is about 47 %.
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压电风扇技术冷却电子元件的可行性回顾研究
近年来,电子设备行业发展迅速。这些设备的发热量严重增加。电子设备温度的升高会降低其性能,最终导致其故障。因此,对有效冷却系统的要求比以往任何时候都更加重要。研究人员关注的最重要的散热方法之一是使用压电风扇(PE)。当前的研究回顾了自近 40 年前发现压电风扇以来的大部分发展,重点是降低功耗。大部分改进和发展都集中在为这些压电风扇获得最佳设计上,这些风扇被用于不同的应用领域。本综述通过比较以往研究中的数据,阐明了设计压电风扇的基础和概念。此外,在过去十年中,数值模拟已成为预测压电风扇优化设计的有效工具。压电风扇的设计有两种形式,一种是单风扇,另一种是多风扇。单风扇系统的应用范围有限,因为它无法取代大型冷却系统。因此,由多个压电风扇组成的冷却系统有望成为电子设备有效散热的独特解决方案。实验研究约占 32%,CFD 研究约占 21%,两者相加约占 47%。
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