Investigation of the Spray Generation due to Bag Breakup Fragmentation Phenomena with Optical Methods in Environmental and Technical Systems

Q4 Computer Science Scientific Visualization Pub Date : 2023-09-01 DOI:10.26583/sv.15.3.09
D.A. Sergeev, Y.I. Troitskaya, A.V. Cherdantsev
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Abstract

This paper discusses the results of a detailed study of bag breakup spray fragmentation process obtained using various panoramic optical methods: shadow imaging and laser-induced fluorescence (LIF) with high-speed video recording. The experiments were carried out in two fundamentally different configurations. When blowing the air flow above a deep-water layer, with the presence of large-scale waves on the surface, and vice versa in conditions of thin layers of liquid. Comparison of the results of observations demonstrated not only the general similarity of the evolution scenario, but also the dependences of the spatiotemporal scales of the process of fragmentation and the formation of droplets on the characteristic flow velocities according to the bag breakup events. This indicates the universal nature of the phenomena leading to the fragmentation and separation of drops from the surface of a liquid blown by a gas flow in natural and technical hydrodynamic systems of a wide class with scales varying over a wide range.
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环境与技术系统中袋子破碎产生喷雾的光学方法研究
本文讨论了采用阴影成像和激光诱导荧光(LIF)高速录像等多种全景光学方法对破袋喷雾破碎过程进行详细研究的结果。实验是在两种完全不同的结构中进行的。当空气在深水层以上流动时,表面会出现大范围的波浪,而在薄层液体条件下反之亦然。通过对观测结果的比较,不仅可以看出演化情景的总体相似性,还可以看出破碎过程和液滴形成过程的时空尺度对特征流速的依赖性。这表明了导致液滴从液体表面被气流吹碎和分离的现象的普遍性质,这些现象在自然和技术流体动力系统的广泛类别中,其规模在很大范围内变化。
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来源期刊
Scientific Visualization
Scientific Visualization Computer Science-Computer Vision and Pattern Recognition
CiteScore
1.30
自引率
0.00%
发文量
20
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