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The influence of acoustic field induced by HRT on oscillation behavior of a single droplet

机译:HRT引起的声场对单个液滴振荡行为的影响

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摘要

This paper presents an experimental and theoretical study on the effects of an acoustic field induced by Hartmann Resonance Tube (HRT) on droplet deformation behavior. The characteristics of the acoustic field generated by HRT are investigated. Results show that the acoustic frequency decreases with the increase of the resonator length, the sound pressure level (SPL) increases with the increase of nozzle pressure ratio (NPR), and it is also noted that increasing resonator length can cause SPL to decrease, which has rarely been reported in published literature. Further theoretical analysis reveals that the resonance frequency of a droplet has several modes, and when the acoustic frequency equals the droplet’s frequency, heightened droplet responses are observed with the maximum amplitude of the shape oscillation. The experimental results for different resonator cavity lengths, nozzle pressure ratios and droplet diameters confirm the non-linear nature of this problem, and this conclusion is in good agreement with theoretical analysis. Measurements by high speed camera have shown that the introduction of an acoustic field can greatly enhance droplet oscillation, which means with the use of an ultrasonic atomizer based on HRT, the quality of atomization and combustion can be highly improved.
机译:本文对Hartmann共振管(HRT)引起的声场对液滴变形行为的影响进行了实验和理论研究。研究了HRT产生的声场的特性。结果表明,声频随谐振器长度的增加而降低,声压级(SPL)随着喷嘴压力比(NPR)的增加而增加,还应注意,谐振器长度的增加会导致SPL减小,从而使声压级减小。在已发表的文献中很少有报道。进一步的理论分析表明,液滴的共振频率具有多种模式,并且当声频等于液滴的频率时,可以观察到在形状振荡的最大振幅下液滴响应增强。不同谐振腔长度,喷嘴压力比和液滴直径的实验结果证实了该问题的非线性性质,这一结论与理论分析相吻合。高速相机的测量表明,声场的引入可以大大增强液滴的振荡,这意味着使用基于HRT的超声雾化器可以大大提高雾化和燃烧的质量。

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