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一种具有花瓣形通道的高性能合成射流压电气泵。

A High-Performance Synthetic Jet Piezoelectric Air Pump with Petal-Shaped Channel.

作者信息

Li Xingqi, Liu Xiaopeng, Dong Luntao, Sun Xiaodong, Tang Huajie, Liu Guojun

机构信息

College of Mechanical and Aerospace Engineering, Jilin University, Changchun 130025, China.

College of Communication Engineering, Jilin University, Changchun 130025, China.

出版信息

Sensors (Basel). 2022 Apr 22;22(9):3227. doi: 10.3390/s22093227.

Abstract

The synthetic jet piezoelectric air pump is a potential miniature device for electronic cooling. In order to improve the performance of the device, a small-sized synthetic jet piezoelectric air pump is proposed in this work, which is mainly characterized by petal-shaped inlet channels. First, the structure and working principle of the piezoelectric vibrator and the proposed pump are analyzed. Then, three synthetic jet piezoelectric air pumps with different inlet channels are compared. These inlets are the direct channels, the diffuser/nozzle channels, and the petal-shaped channels, respectively. Furthermore, the performance of the synthetic jet piezoelectric air pump with the petal-shaped inlet channels is optimized by orthogonal tests. Finally, the simulation was used to investigate the heat dissipation capability of the synthetic jet piezoelectric pump. The experimental results show that among the three inlet channels, the petal-shaped channel can greatly improve the performance of the pump. The unoptimized pump with petal-shaped channels has a maximum flow rate of 1.8929 L/min at 100 V, 3.9 kHz. Additionally, the optimized pump with petal-shaped channels reaches a maximum flow rate of 3.0088 L/min at 100 V, 3.7 kHz, which is 58.95% higher than the unoptimized one. The proposed synthetic jet piezoelectric air pump greatly improves the output performance and has the advantages of simple structure, low cost, and easy integration. The convective heat transfer coefficient of the synthetic jet piezoelectric pump is 28.8 W/(m2·°C), which can prove that the device has a better heat dissipation capability.

摘要

合成射流压电气泵是一种用于电子冷却的潜在微型设备。为了提高该设备的性能,本文提出了一种小型合成射流压电气泵,其主要特点是采用花瓣形进气通道。首先,分析了压电振动器和所提出的泵的结构及工作原理。然后,比较了三种具有不同进气通道的合成射流压电气泵。这些进气通道分别是直通道、扩压器/喷嘴通道和花瓣形通道。此外,通过正交试验对具有花瓣形进气通道的合成射流压电气泵的性能进行了优化。最后,利用模拟研究了合成射流压电泵的散热能力。实验结果表明,在三种进气通道中,花瓣形通道能大大提高泵的性能。未优化的带花瓣形通道的泵在100V、3.9kHz时的最大流量为1.8929L/min。此外,优化后的带花瓣形通道的泵在100V、3.7kHz时的最大流量达到3.0088L/min,比未优化的泵高出58.95%。所提出的合成射流压电气泵大大提高了输出性能,具有结构简单、成本低、易于集成等优点。合成射流压电泵的对流换热系数为28.8W/(m2·°C),这可以证明该设备具有较好的散热能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aeb/9103783/c00ecc9ee0e7/sensors-22-03227-g001.jpg

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