A review of bubble collapse near particles

Jiaxin Yu, Jinxin Luo, Yiming Li, Yuning Zhang
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Abstract

Bubble–particle interactions are of great importance in cavitation bubble dynamics, especially in the case of silt-laden flow. In this paper, a review of the physical mechanisms involved in bubble collapse near particles is presented, with an emphasis on the jet and shock wave phenomenon. First of all, the collapse of a bubble occurring close to a flat wall is introduced to provide a basis for understanding cavitation behavior near boundaries. Then, with the aim of revealing the physical processes that occur during bubble collapse near particles, this is followed by a detailed discussion, with plentiful examples, of the collapse process (the inception, growth, collapse, rebound, and final disappearance of the bubble) and the formation and behavior of jets (the inception jet, counter jet, and double jets) and shock waves (incident, reflected, jet-induced, and jet-split shock waves).
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微粒附近气泡坍塌研究综述
气泡与颗粒之间的相互作用在空化气泡动力学中具有重要意义,尤其是在淤泥流动的情况下。本文综述了气泡在颗粒附近塌陷的物理机制,重点是射流和冲击波现象。首先,介绍了靠近平壁的气泡坍塌,为理解边界附近的空化行为提供了基础。然后,为了揭示粒子附近气泡坍塌过程中发生的物理过程,通过大量实例详细讨论了坍塌过程(气泡的萌发、生长、坍塌、反弹和最终消失)以及射流(萌发射流、反射流和双射流)和冲击波(入射冲击波、反射冲击波、射流诱发冲击波和射流分裂冲击波)的形成和行为。
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