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Non-reflecting boundary conditions for atomistic, continuum and coupled atomistic/continuum simulations

机译:原子,连续和耦合原子/连续模拟的非反射边界条件

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摘要

We present a method to numerically calculate a non-reflecting boundary condition which is applicable to atomistic, continuum and coupled multiscale atomistic/continuum simulations. The method is based on the assumption that the forces near the domain boundary can be well represented as a linear function of the displacements, and utilizes standard Laplace and Fourier transform techniques to eliminate the unnecessary degrees of freedom. The eliminated degrees of freedom are accounted for in a time-history kernel that can be calculated for arbitrary crystal lattices and interatomic potentials, or regular finite element meshes using an automated numerical procedure. The new theoretical developments presented in this work allow the application of the method to non-nearest neighbour atomic interactions; it is also demonstrated that the identical procedure can be used for finite element and mesh-free simulations. We illustrate the effectiveness of the method on a one-dimensional model problem, and calculate the time-history kernel for FCC gold using the embedded atom method (EAM). Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:我们提出了一种数值计算非反射边界条件的方法,该方法适用于原子,连续和耦合多尺度原子/连续模拟。该方法基于这样的假设:接近域边界的力可以很好地表示为位移的线性函数,并利用标准的拉普拉斯和傅立叶变换技术消除不必要的自由度。消除的自由度是在时间历史核中解决的,可以使用自动数值程序为任意晶格和原子间电势或规则有限元网格计算时间历史核。在这项工作中提出的新的理论发展使得该方法可用于非最近邻原子相互作用。还证明了相同的过程可用于有限元和无网格仿真。我们说明了该方法对一维模型问题的有效性,并使用嵌入式原子方法(EAM)计算了FCC金的时间历史核。版权所有(c)2005 John Wiley&Sons,Ltd.

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