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A Multi-Scale Model for Simulating Liquid-Fabric Interactions

机译:模拟液体-织物相互作用的多尺度模型

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We propose a method for simulating the complex dynamics of partially and fully saturated woven and knit fabrics interacting with liquid, including the effects of buoyancy, nonlinear drag, pore (capillary) pressure, dripping, and convection-diffusion. Our model evolves the velocity fields of both the liquid and solid relying on mixture theory, as well as tracking a scalar saturation variable that affects the pore pressure forces in the fluid. We consider the porous microstructure implied by the fibers composing individual threads, and use it to derive homogenized drag and pore pressure models that faithfully reflect the anisotropy of fabrics. In addition to the bulk liquid and fabric motion, we derive a quasi-static flow model that accounts for liquid spreading within the fabric itself. Our implementation significantly extends standard numerical cloth and fluid models to support the diverse behaviors of wet fabric, and includes a numerical method tailored to cope with the challenging nonlinearities of the problem. We explore a range of fabric-water interactions to validate our model, including challenging animation scenarios involving splashing, wringing, and collisions with obstacles, along with qualitative comparisons against simple physical experiments.
机译:我们提出了一种模拟部分和完全饱和的机织和针织织物与液体相互作用的复杂动力学的方法,包括浮力,非线性阻力,孔隙(毛细管)压力,滴落和对流扩散的影响。我们的模型根据混合理论来演化液体和固体的速度场,并跟踪影响流体中孔隙压力的标量饱和变量。我们考虑了构成单线的纤维所隐含的多孔微结构,并使用它来推导出均一的阻力和孔隙压力模型,这些模型忠实地反映了织物的各向异性。除了大量的液体和织物运动之外,我们还导出了一个准静态流动模型,该模型考虑了液体在织物内部的扩散。我们的实现显着扩展了标准的数值布料和流体模型,以支持湿织物的各种行为,并包括量身定制的数值方法,以解决问题的非线性挑战。我们探索了各种织物与水之间的相互作用以验证我们的模型,包括具有挑战性的动画场景,包括飞溅,扭曲和与障碍物的碰撞,以及与简单物理实验的定性比较。

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