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Dynamic Kelvinlets: Secondary Motions based on Fundamental Solutions of Elastodynamics

机译:动态Kelvinlets:基于弹性动力学基本解的二次运动

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We introduce Dynamic Kelvinlets, a new analytical technique for real-time physically based animation of virtual elastic materials. Our formulation is based on the dynamic response to time-varying force distributions applied to an infinite elastic medium. The resulting displacements provide the plausibility of volumetric elasticity, the dynamics of compressive and shear waves, and the interactivity of closed-form expressions. Our approach builds upon the work of de Goes and James [2017] by presenting an extension of the regularized Kelvinlet solutions from elastostatics to the elastodynamic regime. To finely control our elastic deformations, we also describe the construction of compound solutions that resolve pointwise and keyframe constraints. We demonstrate the versatility and efficiency of our method with a series of examples in a production grade implementation.
机译:我们介绍了动态Kelvinlets,这是一种用于虚拟弹性材料的基于物理的实时动画的新分析技术。我们的公式是基于对应用于无限弹性介质的时变力分布的动态响应。产生的位移提供了体积弹性的合理性,压缩波和剪切波的动力学以及闭合形式的表达的相互作用。我们的方法基于de Goes和James [2017]的工作,提出了正则化Kelvinlet解的扩展,从弹性体到弹性动力体制。为了精确控制我们的弹性变形,我们还描述了解决点向和关键帧约束的复合解决方案的构造。我们通过在生产级实施中的一系列示例证明了我们方法的多功能性和效率。

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