首页> 外文会议>ASME international mechanical engineering congress and exposition >THE BOUNDARY INTEGRAL METHOD APPLIED TO NON-SPHERICAL CAVITATION BUBBLE GROWTH AND COLLAPSE CLOSE TO A RIGID BOUNDARY
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THE BOUNDARY INTEGRAL METHOD APPLIED TO NON-SPHERICAL CAVITATION BUBBLE GROWTH AND COLLAPSE CLOSE TO A RIGID BOUNDARY

机译:适用于非球面空泡冒泡增长并塌陷于刚性边界的边界积分方法

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Recently much attention has been paid to studies concerning bubble dynamics in the cavitation phenomena and this topic has been the subject of many research works. In fact, the simulation of non-spherical bubble dynamics and its interaction with solid boundaries have received much less attention due to the complexity of the problem. One of the main reasons of the structural damages in the cavitation phenomenon is due to the formation of micro jets generated due to the bubble collapse and impinging on the solid surfaces or boundaries. The boundary integral method (BIM) based on Green's function is used to model the oscillation and collapse of a cavitation bubble close to a rigid boundary. The liquid is considered to be incompressible, inviscid, and irrational around the bubble. These assumptions satisfy the conditions for the Laplacian equation. The theory permits one to predict correctly the interaction between the bubble and the rigid boundary, which is of great importance in the study of cavitation damage due to a bubble collapsing close to the boundaries. The results reveal that the amplitude of bubble oscillation depends on the bubble location away from a rigid surface. Also, the theory for the cavitation bubble dynamics presented in this study has many advantages in various situations and might be helpful to understand effects of the cavitation phenomenon such as generation of excessive vibration, surface erosion and undesirable acoustic emission.
机译:近来,人们对与空化现象中的气泡动力学有关的研究给予了极大的关注,并且该主题已成为许多研究工作的主题。实际上,由于问题的复杂性,非球形气泡动力学及其与固体边界的相互作用的仿真受到的关注较少。空化现象中结构损坏的主要原因之一是由于气泡破裂和撞击固体表面或边界而产生的微射流的形成。基于格林函数的边界积分方法(BIM)用于模拟接近刚性边界的空化气泡的振荡和坍塌。认为该液体在气泡周围不可压缩,不粘并且不合理。这些假设满足拉普拉斯方程的条件。该理论允许人们正确地预测气泡和刚性边界之间的相互作用,这在研究由于气泡在边界附近坍塌而引起的气蚀损伤中具有重要意义。结果表明,气泡振荡的幅度取决于远离刚性表面的气泡位置。此外,本研究中提出的空化气泡动力学理论在各种情况下都有许多优势,可能有助于理解空化现象的影响,例如产生过多的振动,表面腐蚀和不良的声发射。

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