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Non-spherical bubble behavior in vortex flow fields

机译:涡流场中的非球形气泡行为

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The boundary element method (BEM) is applied to solve the unsteady behavior of a bubble placed in a vortex flow field. The steady vortex field is given in terms of the viscous core radius and the circulation, both of which may vary along the vortex axis. For this study, 2DynaFS©, an axisymmetric potential flow code which has been verified successfully for diverse type of fluid dynamic problems, is extended. The modifications to accommodate the ambient vortex flow field and to model the extreme deformations of the bubble are presented. Through the numerical simulations, the time history of the bubble geometry and the corresponding pressure signal at a fixed field point are obtained. A special effort is made to continue the numerical simulation after the bubble splits into two or more sub-bubbles. Indeed, it is found that an elongated bubble sometimes splits into smaller bubbles, which then collapse with the emission of strong pressure signals. The behavior of the axial jets after the split is also studied in more detail.
机译:应用边界元方法(BEM)来解决放置在涡流场中的气泡的非稳态行为。稳态涡流场是根据粘性芯半径和环流给出的,两者都可能沿着涡流轴变化。对于本研究,扩展了2DynaFS©,这是一种轴对称的潜在流代码,该代码已成功验证了各种类型的流体动力学问题。提出了适应环境涡流场并模拟气泡极端变形的修改方法。通过数值模拟,获得了气泡几何形状的时间历程以及在固定场点处的相应压力信号。在气泡分裂为两个或多个子气泡之后,需要做出特别的努力来继续进行数值模拟。实际上,已经发现拉长的气泡有时分裂成较小的气泡,然后随着强压力信号的发射而塌陷。分裂后轴向射流的行为也得到了更详细的研究。

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