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SIGGRAPH2022顶会

A moving eulerian-lagrangian particle method for thin film and foam simulation

Yitong Deng, Mengdi Wang, Xiangxin Kong, Shiying Xiong, Zangyueyang Xian, Bo Zhu

2022年份
20被引次数
7顶会引用

摘要

College, USA Fig. 1. The dynamic formation of a double-bubble with intricate flow patterns, simulated by our proposed method. With the appropriate treatment of surface tension near the junction, two bubbles spontaneously settle into meeting angles of ≈ 120 • , recovering what is known as the Plateau border.

We present the Moving Eulerian-Lagrangian Particles (MELP), a novel meshfree method for simulating incompressible fluid on thin films and foams. Employing a bi-layer particle structure, MELP jointly simulates detailed, vigorous flow and large surface deformation at high stability and efficiency. In addition, we design multi-MELP: a mechanism that facilitates the physicallybased interaction between multiple MELP systems, to simulate bubble clusters and foams with non-manifold topological evolution. We showcase the efficacy of our method with a broad range of challenging thin film phenomena, including the Rayleigh-Taylor instability across double-bubbles, foam fragmentation with rim surface tension, recovery of the Plateau borders, Newton black films, as well as cyclones on bubble clusters.

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