Effect of Nozzle Length on Jet Occurring Explosive Droplets Splashing

Tsutomu Ishido, H. Hasegawa
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Abstract

ABSTRACT Water jet accompanied with explosive droplets splashing under the various conditions was observed by flow visualization method as a basic study on the droplets control to develop the novel atomization system. Water jet that spouted from nozzle attached to bottom of air pressurized water reservoir naturally draws air from free surface of water in the reservoir and becomes a gas-liquid mixture jet when the free surface of water in the reservoir makes low into some height from the bottom with time elapsed. The gas-liquid mixture jet has made periodic radial splash of water droplets. In this study, the nozzle length and ejection pressure were changed and the droplets splashing phenomenon was analyzed by using high speed visualization and pressure measurement. As a result, it was found that the frequency of aligned droplets was changed due to difference in the nozzle length.
喷嘴长度对射流发生爆炸液滴飞溅的影响
摘要采用流动可视化方法,对不同条件下爆炸液滴溅射时的水射流进行了观察,并对液滴控制进行了基础研究。空气加压式储水池底部的喷嘴喷出的水射流,自然地从储水池的自由水面吸收空气,随着时间的推移,当储水池的自由水面从底部下降到一定高度时,水射流就成为气液混合射流。气液混合射流使水滴周期性径向飞溅。本文采用高速可视化和压力测量相结合的方法,改变喷嘴长度和喷射压力,分析液滴溅射现象。结果发现,由于喷嘴长度的不同,排列液滴的频率发生了变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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