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Particle-Laden Fluid on Flow Maps

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arxiv 2409.06246 v1 pith:OLYODLAN submitted 2024-09-10 cs.GR physics.flu-dyn

classification cs.GRphysics.flu-dyn
keywords flowparticleparticle-ladensolvingviscositycouplingdragequations
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We propose a novel framework for simulating ink as a particle-laden flow using particle flow maps. Our method addresses the limitations of existing flow-map techniques, which struggle with dissipative forces like viscosity and drag, thereby extending the application scope from solving the Euler equations to solving the Navier-Stokes equations with accurate viscosity and laden-particle treatment. Our key contribution lies in a coupling mechanism for two particle systems, coupling physical sediment particles and virtual flow-map particles on a background grid by solving a Poisson system. We implemented a novel path integral formula to incorporate viscosity and drag forces into the particle flow map process. Our approach enables state-of-the-art simulation of various particle-laden flow phenomena, exemplified by the bulging and breakup of suspension drop tails, torus formation, torus disintegration, and the coalescence of sedimenting drops. In particular, our method delivered high-fidelity ink diffusion simulations by accurately capturing vortex bulbs, viscous tails, fractal branching, and hierarchical structures.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Fluid Simulation on Vortex Particle Flow Maps

    cs.GR 2025-05 conditional novelty 8.0 of 10

    A particle flow map method that evolves vorticity and the flow map Hessian on particles extends stable flow map lengths by 3-12x in fluid simulations.

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