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首页> 外文期刊>ACM Transactions on Graphics >Interlinked SPH Pressure Solvers for Strong Fluid-Rigid Coupling
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Interlinked SPH Pressure Solvers for Strong Fluid-Rigid Coupling

机译:互连的SPH压力求解器可实现牢固的液固耦合

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摘要

We present a strong fluid-rigid coupling for Smoothed Particle Hydrodynamics (SPH) fluids and rigid bodies with particle-sampled surfaces. The approach interlinks the iterative pressure update at fluid particles with a second SPH solver that computes artificial pressure at rigid-body particles. The introduced SPH rigid-body solver models rigid-rigid contacts as artificial density deviations at rigid-body particles. The corresponding pressure is iteratively computed by solving a global formulation that is particularly useful for large numbers of rigid-rigid contacts. Compared to previous SPH coupling methods, the proposed concept stabilizes the fluid-rigid interface handling. It significantly reduces the computation times of SPH fluid simulations by enabling larger time steps. Performance gain factors of up to 58 compared to previous methods are presented. We illustrate the flexibility of the presented fluid-rigid coupling by integrating it into DFSPH, IISPH, and a recent SPH solver for highly viscous fluids. We further show its applicability to a recent SPH solver for elastic objects. Large scenarios with up to 90M particles of various interacting materials and complex contact geometries with up to 90k rigid-rigid contacts are shown. We demonstrate the competitiveness of our proposed rigid-body solver by comparing it to Bullet.
机译:我们提出了一种用于流体粒子动力学(SPH)流体和具有粒子采样表面的刚体的强流体刚耦合。该方法将流体粒子处的迭代压力更新与第二个SPH解算器互连,该算法可计算刚体粒子处的人造压力。引入的SPH刚体求解器将刚柔接触建模为刚体粒子处的人为密度偏差。通过求解全局公式来迭代计算相应的压力,该公式对于大量的刚柔接触特别有用。与以前的SPH耦合方法相比,提出的概念可以稳定流体-刚性界面。通过启用更大的时间步长,它大大减少了SPH流体模拟的计算时间。与以前的方法相比,性能增益系数高达58。我们通过将其结合到DFSPH,IISPH和用于高粘度流体的最新SPH求解器中,说明了所提出的流体-刚性耦合的灵活性。我们进一步展示了其对弹性物体的最新SPH求解器的适用性。显示了具有多达90M个各种相互作用材料的粒子以及具有多达90k个刚性刚触点的复杂触点几何结构的大型方案。通过与Bullet进行比较,我们证明了我们提出的刚体求解器的竞争力。

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