Experimental investigation on the performance of a novel dual synthetic jet actuator-based atomization device

Experimental investigation on the performance of a novel dual synthetic jet actuator-based atomization device
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基于双合成射流激励器的新型雾化装置性能实验研究

DOI:
10.1016/j.ijheatmasstransfer.2019.07.056
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发表时间:
2019-10
影响因子:
5.2
通讯作者:
He Wei;Zhen-bing Luo;Xiong Deng;Z. Xia
He Wei;Zhen-bing Luo;Xiong Deng;Z. Xia
中科院分区:
工程技术2区
文献类型:
--
作者:
He Wei;Zhen-bing Luo;Xiong Deng;Z. Xia

文献摘要

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A synthetic jet actuator is a zero net mass flux device. In order to improve the compactness of spray cooling system, a novel dual synthetic jet actuator-based atomization device (DSJAA) is proposed and designed. In this atomization system, water is atomized by the oscillating dual synthetic jets instead of high-pressure air source. Moreover, no extra power for supplying water is needed. The effects of driving voltage, driving frequency, fluid volumetric flow rate and spray height are investigated on atomization rate, water droplet size, surface temperature and heat flux. The maximum atomization rate is 3.4 L/h at driving frequency of 700 Hz and driving voltage of 210 V. The dimensionless correlations between the physical properties of dual synthetic jet and the size of water droplet are presented, which provides guideline for the design of a dual synthetic jet actuator-based fluid atomizer. The experimental results show that when the resonance frequency of piezoelectric diaphragm is equal to half the Helmholtz frequency of DSJAA, the atomization performance is the best by setting driving frequency to resonance frequency. The best spray height is equal to the fluid stroke length of DSJAA. The cooling capability is mainly influenced by the Reynolds number of dual synthetic jet and volumetric flow rate of water. A correlation for DSJAA cooling is established. A maximum heat flux of the novel spray cooling method reaches as high as 59 W/cm2in the experiments.