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Atomic-level Stress Calculation and Continuum-Molecular System Equivalence

机译:原子级应力计算和连续分子系统等效

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An atomistic level stress tensor is defined with physical clarity, based on the SPH method. This stress tensor rigorously satisfies the conservation of linear momentum, and is appropriate for both homogeneous and inhomogeneous deformations. The formulation is easier to implement than other stress tensors that have been widely used in atomistic analysis, and is validated by numerical examples. The present formulation is very robust and accurate, and will play an important role in the multiscale simulation, and in molecular dynamics. An equivalent continuum is also defined for the molecular dynamics system, based on the developed definition of atomistic stress and in conjunction with the SPH technique. The process is simple and easy to implement, and the fields are with high-order continuity. This equivalent continuum maintains the physical attributes of the atomistic system. This development provides a systematic approach to the continuum analysis of the discrete atomic systems.
机译:基于SPH方法,以物理清晰度定义了原子级应力张量。该应力张量严格满足线性动量的守恒,并且适用于均质和非均质变形。该公式比原子分析中已广泛使用的其他应力张量更易于实现,并通过数值示例进行了验证。本发明的配方非常坚固和准确,将在多尺度模拟和分子动力学中发挥重要作用。基于已发展的原子应力定义以及SPH技术,还为分子动力学系统定义了一个等效的连续体。该过程简单易实现,并且字段具有高阶连续性。该等效连续体维持了原子系统的物理属性。这一发展为离散原子系统的连续分析提供了一种系统的方法。

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