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AN OPTIMIZATION-BASED ATOMISTIC-TO-CONTINUUM COUPLING METHOD~*

机译:一种基于优化的原子-连续耦合方法〜*

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摘要

We present a new optimization-based method for atomistic-to-continuum (AtC) coupling. The main idea is to cast the latter as a constrained optimization problem with virtual Dirichlet controls on the interfaces between the atomistic and continuum subdomains. The optimization objective is to minimize the error between the atomistic and continuum solutions on the overlap between the two subdomains, while the atomistic and continuum force balance equations provide the constraints. Separation, rather then blending of the atomistic and continuum problems, and their subsequent use as constraints in the optimization problem distinguishes our approach from the existing AtC formulations. We present and analyze the method in the context of a one-dimensional chain of atoms modeled using a linearized two-body potential with next-nearest neighbor interactions.
机译:我们提出了一种新的基于优化的原子到连续体(AtC)耦合的方法。主要思想是将后者转换为原子和连续子域之间接口上的虚拟Dirichlet控件的约束优化问题。优化目标是使两个子域之间重叠时原子解和连续解之间的误差最小,而原子和连续力平衡方程式则提供了约束。分离,而不是混合原子问题和连续问题,以及随后将它们用作优化问题中的约束条件,将我们的方法与现有的AtC公式区分开来。我们在使用一维线性化的两体电势与下一近邻相互作用进行建模的一维原子链的背景下,介绍并分析了该方法。

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