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Numerical Coarsening of Inhomogeneous Elastic Materials

机译:非均质弹性材料的数值粗化

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We propose an approach for efficiently simulating elastic objects made of non-homogeneous, non-isotropic materials. Based on recent developments in homogenization theory, a methodology is introduced to approximate a deformable object made of arbitrary fine structures of various linear elastic materials with a dynamically-similar coarse model. This numerical coarsening of the material properties allows for simulation of fine, heterogeneous structures on very coarse grids while capturing the proper dynamics of the original dynamical system, thus saving orders of magnitude in computational time. Examples including inhomogeneous and/or anisotropic materials can be realistically simulated in realtime with a numerically-coarsened model made of a few mesh elements.
机译:我们提出一种有效模拟由非均质,非各向同性材料制成的弹性物体的方法。基于均质化理论的最新发展,引入了一种方法,可以用动态相似的粗糙模型来近似估算由各种线性弹性材料的任意精细结构制成的可变形物体。材料属性的这种数值粗化允许在非常粗糙的网格上模拟精细的异构结构,同时捕获原始动力学系统的适当动力学,从而节省了计算时间。包含不均匀和/或各向异性材料的示例可以使用由几个网格元素组成的数值粗化模型实时地进行实际仿真。

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