反复破坏岩体的地质力学状态建模

Q4 Medicine
M. Zhuravkov, A. B. Petrovskiy, V. Y. Prushak, M. A. Nikolaitchik, D. Puzanov, N. M. Klimkovich
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引用次数: 0

摘要

提出了地质力学模型,发展了数值模拟技术。结合Starobin矿床第3钾层的结构、强度特征,对其反复破坏岩体的地质力学状态进行了计算机模拟,并对其初采工艺方案进行了模拟。确定了采空矿体和盘间矿柱破坏岩体中应力-应变区形成规律。结果表明,位于破坏区内的巷道的稳定性在很大程度上取决于距初次开采的时间以及相对于初次开采位置的岩体中巷道的位置。可以确定,对于重复开采来说,最危险的是广义剪切区域,因为在这些区域岩体运动和破坏的过程最有可能是活跃的。在广义压缩区,发生了塌陷岩石的压实过程。因此,经过相当长的一段时间,这些地区的岩体状态可以被视为接近自然状态,没有额外的结构破坏。在这些地区,岩体的有效力学特性实际上得到了恢复。因此,在采空区巷道和工作面围岩垮落压实区处于广义压应力状态区域时,巷道的稳定性达到最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of the geomechanical state of the rock massifs being undermined repeatedly
The geomechanical model is proposed and the technology of numerical simulation is developed. Carried out computer simulation of the geomechanical state of the being undermined repeatedly rock massifs of the 3rd potash level of the Starobin deposit taking into account its structural and strength features, as well as the technological schemes of the primary mining. The regularities of the stress-strain zones formation in the undermined rock mass containing mined out mine workings and inter-panel pillars were determined. It is shown that the stability of the workings located in the undermined areas significantly depends on the time passed since the primary mining and on the location of the workings in the massif relative to the location of the primary mining operations. It is determined that the most dangerous for repeated mining are the areas of generalized shear, since the processes of rock mass movement and failure are most likely to be active in these areas. In the areas of generalized compression, the processes of compaction of caved rock take place. As a consequence, after a considerable period of time, the state of the rock massif in these areas can be treated as approximating to the natural state, without additional structural failures. In such areas, the effective mechanical characteristics of the rock massifs are practically restored. Therefore, the greatest stability of mine workings will be achieved when they are placed in the area of generalized compression stress state in the zone of caved, compacted rocks of the mined out roadways and faces. 
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来源期刊
CiteScore
0.40
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发文量
35
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