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Discrete and continuum methods for numerical simulations of non-linear wave propagation in discontinuous media

机译:不连续介质中非线性波传播数值模拟的离散和连续方法

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摘要

The main objective of this paper is to develop a methodology to model dynamic loading of various discontinuous media. Two methods for modeling non-linear waves in a media with multiple discontinuities are considered. The first one, a discrete method, is based on the Simple Common Plane contact algorithm. This method can be applied both to compliant contacts characterized by finite thickness and elastic moduli (such as joints in geomechanics) as well as to non-compliant frictional contacts traditionally described by the slide lines in finite element/finite difference codes. The second one, a continuum method, assumes that the contacts are not compliant and can be modeled as one or several weakness planes cutting through the elements of the computational mesh. Both discrete and continuum methods described in the paper can be applied to derive equivalent continuum properties for media with multiple discontinuities. An example of such application for a randomly jointed media is given in the paper.
机译:本文的主要目的是开发一种对各种不连续介质的动态载荷进行建模的方法。考虑了在具有多个不连续性的介质中建模非线性波的两种方法。第一种是离散方法,基于简单公共平面接触算法。该方法既可以应用于以有限厚度和弹性模量为特征的顺应性触点(例如,地质力学中的接点),也可以应用于传统上由滑动线以有限元/有限差分代码描述的非顺应性摩擦触点。第二种方法是连续方法,它假定接触点不合规,并且可以将其建模为一个或多个穿过计算网格元素的弱点平面。本文所述的离散方法和连续介质方法均可用于导出具有多个不连续性的介质的等效连续介质属性。本文给出了这种对随机连接的介质的应用示例。

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