熔化物体的基于粒子的非牛顿流体动画

Afonso Paiva, Fabiano Petronetto, T. Lewiner, G. Tavares
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引用次数: 45

摘要

本文提出了一种新的物体融化和流动的视觉逼真动画技术。它模拟了金属、塑料、蜡、聚合物和熔岩等材料的粘塑性特性。该技术包括通过高粘度的非牛顿流体向低粘度液体的转变来模拟物体。在熔化过程中,粘度是用一般的牛顿流体模型来表示的,其性质取决于局部温度。相变由热方程驱动。流体模拟框架使用拉格朗日方法的一种变体,称为光滑粒子流体动力学。文中还提出了几种提高求解效率和数值稳定性的格式
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Particle-based non-Newtonian fluid animation for melting objects
This paper presents a new visually realistic animation technique for objects that melt and flow. It simulates viscoplastic properties of materials such as metal, plastic, wax, polymer and lava. The technique consists in modeling the object by the transition of a non-Newtonian fluid with high viscosity to a liquid of low viscosity. During the melting, the viscosity is formulated using the general Newtonian fluids model, whose properties depend on the local temperature. The phase transition is then driven by the heat equation. The fluid simulation framework uses a variation of the Lagrangian method called smoothed particle hydrodynamics. This paper also includes several schemes that improve the efficiency and the numerical stability of the equations
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