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首页> 外文期刊>Journal of Fluid Mechanics >Multi-oscillations of a bubble in a compressible liquid near a rigid boundary
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Multi-oscillations of a bubble in a compressible liquid near a rigid boundary

机译:气泡在刚性边界附近在可压缩液体中的多重振荡

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摘要

Bubble dynamics near a rigid boundary are associated with wide and important applications in cavitation erosion in many industrial systems and medical ultrasonics. This classical problem is revisited with the following two developments. Firstly, computational studies on the problem have commonly been based on an incompressible fluid model, but the compressible effects are essential in thisphenomenon. Consequently, a bubble usually undergoes significantly damped oscillation in practice. In this paper this phenomenon will be modelled using weakly compressible theory and a modified boundary integral method for an axisymmetric configuration, which predicts the damped oscillation. Secondly, the computational studies so far have largely been concerned with the first cycle of oscillation. However, a bubble usually oscillates for a few cycles before it breaks into much smaller ones. Cavitation erosion may be associated with the recollapse phase when the bubble is initiated more than the maximum bubble radius away from the boundary. Both the first and second cycles of oscillation will be modelled. The toroidal bubble formed towards the end of the collapse phase is modelled using a vortex ring model. The repeated topological changes of the bubble are traced from a singly connected to a doubly connected form, and vice versa. This model considers the energy loss due to shock waves emitted at minimum bubble volumes during the beginning of the expansion phase and around the end of the collapse phase. It predicts damped oscillations, where both the maximum bubble radius and the oscillation period reduce significantly from the first to second cycles of oscillation. The damping of the bubble oscillation is alleviated by the existence of the rigid boundary and reduces with the standoff distance between them. Our computations correlate well with the experimental data (Philipp & Lauterborn, J. Fluid Mech., vol. 361, 1998, pp. 75-116) for both the first and second cycles of oscillation. We have successively reproduced the bubble ring in direct contact with the rigid boundary at the end of the second collapse phase, a phenomenon that was suggested to be one of the major causes of cavitation erosion by experimental studies.
机译:刚性边界附近的气泡动力学与许多工业系统和医用超声在气蚀中的广泛重要应用有关。以下两个方面将重新探讨这一经典问题。首先,对该问题的计算研究通常基于不可压缩的流体模型,但是在这种现象中可压缩的作用是必不可少的。因此,实际上,气泡通常会经历明显的阻尼振荡。在本文中,将使用弱可压缩理论和修正的边界积分方法对轴对称结构进行建模,以预测阻尼振动。其次,迄今为止的计算研究主要涉及振动的第一个周期。但是,气泡通常会振荡几个周期,然后破裂成更小的气泡。当气泡引发的气泡大于远离边界的最大气泡半径时,气蚀与再塌陷阶段可能相关。第一和第二个振荡周期都将被建模。使用旋涡环模型对在坍塌阶段结束时形成的环形气泡进行建模。气泡的重复拓扑变化是从单连接到双连接的形式跟踪的,反之亦然。该模型考虑了在膨胀阶段开始时和崩溃阶段结束时,由于气泡最小而发出的冲击波所导致的能量损失。它可以预测阻尼振荡,其中最大气泡半径和振荡周期从第一到第二振荡周期都会显着减小。刚性边界的存在减轻了气泡振荡的阻尼,并随着它们之间的间隔距离而减小。我们的计算与第一和第二振荡周期的实验数据(Philipp&Lauterborn,J. Fluid Mech。,vol。361,1998,pp。75-116)很好地相关。在第二次崩塌阶段结束时,我们已经连续地复制了与刚性边界直接接触的气泡环,该现象被实验研究认为是气蚀的主要原因之一。

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