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首页> 外文期刊>SIAM Journal on Scientific Computing >A level set-boundary element method for the simulation of underwater bubble dynamics
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A level set-boundary element method for the simulation of underwater bubble dynamics

机译:用于模拟水下气泡动力学的水平集边界元方法

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The front tracking-boundary element method, though commonly used to simulate underwater bubble dynamics, is not quite well suited for treating the complex topological changes that can occur. In this paper, we present a level set-boundary element method that overcomes this deficiency. This new technique combines the level set method to capture the bubble surface motions and the boundary element method to compute the surface velocities. We propose a level set-type potential function to capture the surface velocity potential, and we formulate a governing equation to evolve this function such that the functional value at the bubble surface is the surface velocity potential consistent with the unsteady Bernoulli equation. A convergence analysis performed using the Rayleigh bubble as reference establishes our implemented procedure to be second-order accurate. We also demonstrate the ease with which our method handles complex topological changes using axisymmetrical examples of bubble merging, bubble splitting, and bubble jet impact. The result for a highly complex problem comprising both jet impact and merging is also presented. Additionally, we develop a more computationally efficient technique that requires computations to be performed only within a narrow band containing the interface.
机译:前跟踪边界元法虽然通常用于模拟水下气泡动力学,但并不十分适合于处理可能发生的复杂拓扑变化。在本文中,我们提出了一种克服这一缺陷的水平集边界元方法。这项新技术结合了用于捕获气泡表面运动的水平集方法和用于计算表面速度的边界元方法。我们提出了一个水平集型势函数来捕获表面速度势,并制定了一个控制方程来演化该函数,以使气泡表面处的函数值为与非稳态伯努利方程一致的表面速度势。使用瑞利气泡作为参考进行的收敛分析确定了我们实现的过程是二阶准确的。我们还使用气泡合并,气泡分裂和气泡射流冲击的轴对称示例演示了我们的方法处理复杂拓扑变化的简便性。还介绍了一个非常复杂的问题的结果,该问题既包括射流冲击又包括合并。此外,我们开发了一种计算效率更高的技术,该技术要求仅在包含接口的窄带内执行计算。

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