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Two-Way Coupled SPH and Particle Level Set Fluid Simulation

机译:两路耦合SPH和粒子水平集流体模拟

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Grid-based methods have difficulty resolving features on or below the scale of the underlying grid. Although adaptive methods (e.g. RLE, octrees) can alleviate this to some degree, separate techniques are still required for simulating small-scale phenomena such as spray and foam, especially since these more diffuse materials typically behave quite differently than their denser counterparts. In this paper, we propose a two-way coupled simulation framework that uses the particle level set method to efficiently model dense liquid volumes and a smoothed particle hydrodynamics (SPH) method to simulate diffuse regions such as sprays. Our novel SPH method allows us to simulate both dense and diffuse water volumes, fully incorporates the particles that are automatically generated by the particle level set method in under-resolved regions, and allows for two way mixing between dense SPH volumes and grid-based liquid representations.
机译:基于网格的方法难以解析基础网格规模以下的特征。尽管自适应方法(例如RLE,八叉树)可以在某种程度上缓解这种情况,但仍需要使用单独的技术来模拟小规模现象,例如喷雾和泡沫,特别是因为这些散布得多的材料的行为通常与密度较大的材料不同。在本文中,我们提出了一种双向耦合的模拟框架,该框架使用粒子水平集方法来有效地模拟稠密的液体体积,并使用平滑粒子流体动力学(SPH)方法来模拟诸如喷雾的扩散区域。我们新颖的SPH方法使我们能够模拟稠密和分散的水量,在未完全解析的区域中完全合并通过粒子水平设置方法自动生成的粒子,并允许在稠密SPH量和基于网格的液体之间进行双向混合表示形式。

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