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High-speed experimental photography of collapsing cavitation bubble between a spherical particle and a rigid wall 被引量:12

High-speed experimental photography of collapsing cavitation bubble between a spherical particle and a rigid wall
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摘要 The synergetic effects between cavitation bubbles and silt particles on the damages of materials are essential problems in fluid machineries. For studying the underlying microscopic mechanisms, in the present paper, the dynamic behaviors of a single cavitation bubble between a spherical particle and a rigid wall are experimentally investigated with a high-speed camera. The results indicate that the existence of the particle can affect the bubble shape during collapse and significantly accelerate the collapse velocity of the bubble. The influences of the particle size, the distance between the bubble and the particle and the distance between the bubble and the rigid wall on the phenomena are qualitatively and quantitatively analyzed. These parameters can prominently affect the collapse velocity of the bubble(especially its maximum value). The synergetic effects between cavitation bubbles and silt particles on the damages of materials are essential problems in fluid machineries. For studying the underlying microscopic mechanisms, in the present paper, the dynamic behaviors of a single cavitation bubble between a spherical particle and a rigid wall are experimentally investigated with a high-speed camera. The results indicate that the existence of the particle can affect the bubble shape during collapse and significantly accelerate the collapse velocity of the bubble. The influences of the particle size, the distance between the bubble and the particle and the distance between the bubble and the rigid wall on the phenomena are qualitatively and quantitatively analyzed. These parameters can prominently affect the collapse velocity of the bubble(especially its maximum value).
作者 张宇宁 谢箫阳 张宇宁 张永学 Yu-ning Zhang;Xiao-yang Xie;Yu-ning Zhang;Yong-xue Zhang
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2018年第6期1012-1021,共10页 水动力学研究与进展B辑(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.51606221,51506051)
关键词 CAVITATION PARTICLE bubble dynamics bubble collapse Cavitation particle bubble dynamics bubble collapse
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