The Pulsation Characteristics of Multiple Bubbles Under Ship Structural Boundary Conditions

Chao Su, Fulin Yu, Wenqi Guo, Zhanquan Li, Yu Ruan, Qinghai Li
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Abstract

To study the pulsation characteristics of multiple bubbles located near the wall structure, underwater low-pressure discharge bubble generation technology was used to study the coupling characteristics of multiple bubbles under horizontal and V-shaped wall conditions. Due to the Bjerknes force on the wall of the bubble, the motion state of the bubble will be affected. Exploring the pulsation characteristics of multiple bubbles under different working conditions and arrangements. The results indicate that the coupling characteristics between bubbles become completely different under boundary conditions. Analyzing the experimental results, it was found that the pulsation period of the bubbles was shortened, resulting in jet, shock wave, and jet loads on the structure, leading to wall damage and necking after fusion. Through different boundary conditions and innovative arrangements of multiple bubbles, the influence of underwater structures on the pulsation characteristics of multiple bubbles in underwater explosions was explored, providing theoretical support for the strength design of ship structures.
船舶结构边界条件下多个气泡的脉动特性
为了研究位于壁面结构附近的多个气泡的脉动特性,采用了水下低压放电气泡生成技术,研究了水平和 V 形壁面条件下多个气泡的耦合特性。由于气泡壁受到比氏力的作用,气泡的运动状态会受到影响。探索不同工况和布置下多个气泡的脉动特性。结果表明,在边界条件下,气泡之间的耦合特性变得完全不同。分析实验结果发现,气泡的脉动周期被缩短,从而对结构产生射流、冲击波和射流载荷,导致融合后的壁面损伤和颈缩。通过不同的边界条件和创新的多气泡排列方式,探索了水下结构对水下爆炸中多气泡脉动特性的影响,为船舶结构的强度设计提供了理论支持。
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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