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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >EFFECT OF TRANSVERSE ACOUSTIC FORCING ON THE CHARACTERISTICS OF IMPINGING JET ATOMIZATION
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EFFECT OF TRANSVERSE ACOUSTIC FORCING ON THE CHARACTERISTICS OF IMPINGING JET ATOMIZATION

机译:横向声学强迫对撞击喷射雾化特性的影响

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This paper is focused on the systematic experimental investigation of the response of the liquid sheets to the transverse acoustic excitation. Present work is carried out in the context of the interaction of atomization process with the acoustic field in the combustors of liquid rocket engines. Liquid sheets produced by impinging jet atomizer over a range of Weber numbers (141-600) and impingement angles (60 degrees-120 degrees) are considered for this study. Freely traveling acoustic waves over a range of frequencies (100-500 Hz) and sound pressure levels (50-109 dB) are used to study the interaction. We observe that the breakup regime plays a vital role in deciding the response of the liquid sheets to the external acoustics. The effect of acoustics is quantified in terms of the sheet characteristics such as breakup length, sheet width, size distribution of primary droplets, and mean droplet size. It is observed that the sheet responds to certain discrete frequencies and consequently shows substantial reduction in breakup length. The mean drop size was also seen to decrease in the presence of acoustic field. A phenomenological analysis of the whole process shows that the average sheet thickness and the sheet area are the critical parameters in determining the quantitative response of the sheet to specific acoustic parameters and the experimental results presented here justify the analysis. It is also shown that the drop size distribution normalized by the mean drop size can be described by Gamma function irrespective of the action of the acoustic forcing.
机译:本文集中于液体片响应到横向声激发的系统实验研究。在雾化过程与液体火箭发动机的燃烧器中的声场相互作用的背景下进行现有工作。考虑到这项研究,通过撞击喷射雾化器产生的喷射雾化器产生的液体片。在一系列频率(100-500Hz)和声压水平(50-109dB)中自由行驶的声波用于研究相互作用。我们观察到,分手制度在将液体纸张响应到外部声学的响应方面起着至关重要的作用。在纸张特性(例如分离长度,底滴尺寸分布)的纸张特性方面,对声学的影响是量化的,初级液滴的尺寸分布和平均液滴尺寸。观察到纸张响应某些离散频率,因此显示分离长度的显着降低。在声场存在下,也看到平均下降尺寸减小。整个过程的现象学分析表明,平均片材厚度和薄片面积是确定纸张对特定声学参数的定量响应的关键参数,并且在此呈现实验结果是证明分析。还示出了通过伽马函数来描述由平均下降尺寸归一化的滴定尺寸分布,而不管声学强制的动作如何。

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