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A GRID-SUPPORTED MARKER PARTICLE SCHEME FOR INTERFACE TRACKING

机译:用于界面跟踪的网格支持的MARKER微粒方案

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摘要

A methodology is presented to simulate the growth and interaction of unstable fronts. Such fronts are found to be important in instabilities arising in several natural and industrial processes, such as solidification, spray dynamics, and bubble growth. The numerical simulation of such phenomena is challenging on account of the highly distorted moving boundary at which, often, curvature-dependent boundary conditions need be applied in each phase. Herein is presented a numerical technique to capture highly distorted interfaces. The interface is represented employing marker particles. Joining successive markers with circular area yields values of curvatures and normals on the interface. The markers are followed over an underlying Cartesian grid and new marker particles are generated at each time step by an intersection procedure. The issue of mergers of interfaces is also attacked and the use of cells permits the simulation of merger-breakup processes. Thus, the method presented here, unlike previous marker particle-based schemes, can handle particle depletion/accumulation and merger/breakup issues with good accuracy. Results are presented, employing velocity functions modeled to mimic the actual instability phenomena, to demonstrate the accuracy and capability of the scheme developed. [References: 42]
机译:提出了一种方法来模拟不稳定前沿的增长和相互作用。人们发现,这些前沿对于在几种自然和工业过程中产生的不稳定性非常重要,例如固化,喷雾动力学和气泡生长。由于高度变形的运动边界,在每个阶段通常需要依赖于曲率的边界条件,因此对此类现象进行数值模拟具有挑战性。本文提出了一种数值技术来捕获高度失真的界面。界面使用标记粒子表示。将连续的标记与圆形区域连接在一起可在界面上产生曲率和法线值。标记位于基本的笛卡尔网格上方,并在每个时间步通过相交过程生成新的标记粒子。接口合并问题也受到攻击,单元的使用允许模拟合并-分解过程。因此,与以前的基于标记粒子的方案不同,此处介绍的方法可以很好地处理粒子耗竭/累积和合并/分解问题。提出的结果采用速度函数建模以模拟实际的不稳定性现象,以证明所开发方案的准确性和能力。 [参考:42]

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