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Augmented material point method for simulating phase changes and varied materials

机译:模拟相变和变化材料的增强材料点方法

摘要

The disclosure provides an approach for simulating and rendering materials across different states and undergoing phase transitions. In one configuration, a simulation application generates video frames depicting a material phenomenon using an augmented material point method (MPM). Traditional MPM does not handle incompressible materials such as fluids. Techniques disclosed herein augment the MPM with a Chorin-style projection technique to enable simulation of arbitrarily incompressible materials. In one configuration, this is achieved with a marker-and-cell (MAC) grid based MPM solver, a splitting of stress used in the simulation into elastic and dilational parts, a projection-like implicit treatment of the Eulerian evolution of the dilational part of the stress, and particular techniques for rasterizing and updating quantities on the MAC grid. In addition, a heat model may be coupled to the MPM solver, allowing material changes to be driven with temperature and phase changes.
机译:本公开提供了一种用于模拟和呈现跨越不同状态并经历相变的材料的方法。在一种配置中,模拟应用程序使用增强的材料点方法(MPM)生成描述材料现象的视频帧。传统的MPM无法处理不可压缩的材料,例如流体。本文公开的技术利用Chorin式投影技术增强了MPM,以能够模拟任意不可压缩的材料。在一种配置中,这是通过基于标记和单元(MAC)网格的MPM求解器,将模拟中使用的应力分解为弹性部分和扩张部分,对扩张部分的欧拉演化进行类似投影的隐式处理来实现的应力,以及用于栅格化和更新MAC网格上的数量的特定技术。另外,可以将热模型耦合到MPM求解器,从而允许随温度和相变驱动材料变化。

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