破坏岩体应力-应变状态数值分析的耦合算法

IF 2.9 3区 工程技术 Q2 MECHANICS
Michael A. Zhuravkov, Mikhail A. Nikolaitchik, Nikita M. Klimkovich
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引用次数: 0

摘要

研究的目的是开发一种耦合的数值模拟算法,用于解决连续介质部分向离散介质部分过渡时的实际力学问题。本文以实际地力学问题为例,考虑了从开采深度到地表模拟的岩体应力-应变状态的求解。这个问题的特点是,在破坏空间附近的一部分岩体变成离散(块状)状态,而其余的岩体仍然是固体。该算法的一个特点是在基于有限元法的数值模拟过程中引入了弹性或粘弹性键系统形式的特殊类型块单元。在研究过程中发现,当采矿深度较大时,从某一深度开始,其对地表的影响减小。实地观测的结果证实了这一事实,但根据工程方法的计算却不能证实这一事实。数值模拟方法的发展使得在地下采矿过程中对整个岩体深度的地球力学过程进行更准确和充分的模拟成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A coupled algorithm for numerical analysis of an undermined rock massif stress–strain state

A coupled algorithm for numerical analysis of an undermined rock massif stress–strain state

The purpose of the research is to develop a coupled algorithm of numerical modeling for solving practical problems of mechanics, in the case when there is a transition of a continuous medium part into a discrete one. As an example, the article considers the solution of the actual geo-mechanics problem on stress–strain state of the undermined rock massif from the mining depth to the earth's surface modeling. This problem is characterized by the fact that a part of the rock massif in the vicinity of the undermined space transforms into a discrete (block) state, while the rest of the rock massif remains solid. A special feature of the developed algorithm is the introduction of special type block elements in the form of elastic or viscoelastic bonds system into the numerical modeling procedure based on the finite element method. In the course of the study, it was shown that when mining depths are large, starting from a certain depth, their impact on the earth's surface decreases. This fact is confirmed by the results of field observations, but it is not confirmed by calculations according to engineering methodologies. The use of the developed approach of numerical modeling allows to model geo-mechanical processes throughout the entire depth of the rock massif during underground mining operations more correctly and adequately.

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来源期刊
Acta Mechanica
Acta Mechanica 物理-力学
CiteScore
4.30
自引率
14.80%
发文量
292
审稿时长
6.9 months
期刊介绍: Since 1965, the international journal Acta Mechanica has been among the leading journals in the field of theoretical and applied mechanics. In addition to the classical fields such as elasticity, plasticity, vibrations, rigid body dynamics, hydrodynamics, and gasdynamics, it also gives special attention to recently developed areas such as non-Newtonian fluid dynamics, micro/nano mechanics, smart materials and structures, and issues at the interface of mechanics and materials. The journal further publishes papers in such related fields as rheology, thermodynamics, and electromagnetic interactions with fluids and solids. In addition, articles in applied mathematics dealing with significant mechanics problems are also welcome.
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