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COUPLING MOLECULAR DYNAMICS AND CONTINUA WITH WEAK CONSTRAINTS

机译:耦合分子动力学和连续性与弱约束

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摘要

One of the most challenging problems in dynamic concurrent multiscale simulations is the reflectionless transfer of physical quantities between the different scales. In particular, when coupling molecular dynamics and finite element discretizations in solid body mechanics, often spurious wave reflections are introduced by the applied coupling technique. The reflected waves are typically of high frequency and are arguably of little importance in the domain where the finite element discretization drives the simulation. In this work, we provide an analysis of this phenomenon. Based on the gained insight, we derive a new coupling approach, which neatly separates high and low frequency waves. Whereas low frequency waves are permitted to bridge the scales, high frequency waves can be removed by applying damping techniques without affecting the coupled share of the solution. As a consequence, our new method almost completely eliminates unphysical wave reflections and deals in a consistent way with waves of arbitrary frequencies. The separation of wavelengths is achieved by employing a discrete L~2-projection, which acts as a low pass filter. Our coupling constraints enforce matching in the range of this projection. With respect to the numerical realization, this approach has the advantage of a small number of constraints, which is computationally efficient. Numerical results in one and two dimensions confirm our theoretical findings and illustrate the performance of our new weak coupling approach.
机译:动态并发多尺度模拟中最具挑战性的问题之一是不同尺度之间物理量的无反射传输。特别地,当在固体力学中耦合分子动力学和有限元离散化时,通过所应用的耦合技术经常引入杂散波反射。反射波通常是高频的,在有限元离散化驱动模拟的领域中,反射波的重要性不高。在这项工作中,我们提供了对此现象的分析。基于所获得的见识,我们得出了一种新的耦合方法,该方法巧妙地分离了高频和低频波。尽管允许使用低频波桥接秤,但可以通过应用阻尼技术去除高频波,而不会影响解决方案的耦合份额。结果,我们的新方法几乎完全消除了非物理波的反射,并以一致的方式处理任意频率的波。波长的分离是通过使用离散的L〜2投影来实现的,该投影充当低通滤波器。我们的耦合约束在此投影范围内强制匹配。关于数值实现,该方法具有少量约束的优点,这在计算上是有效的。一维和二维的数值结果证实了我们的理论发现,并说明了我们新的弱耦合方法的性能。

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