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首页> 外文期刊>Mine water and the environment >The Numerical Analysis of Fault-Induced Mine Water Inrush Using the Extended Finite Element Method and Fracture Mechanics
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The Numerical Analysis of Fault-Induced Mine Water Inrush Using the Extended Finite Element Method and Fracture Mechanics

机译:扩展有限元法与断裂力学对矿山断层突水的数值分析

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摘要

Fault activation caused by construction, earthquakes, or mining can produce disastrous water-inrush episodes in underground mines. Fault activation is generally caused by stress concentration at the fault tip, so in this study, a computational model of a typical underground stope with a hidden fault was established to quantitatively assess the magnitude of the stress concentration of the stress fields of the fault-tip. Numerical simulation was performed using the extended finite element method and fracture mechanics. Stress intensity factors, which represent the magnitude of the stress concentration, were obtained using the interaction integral method to quantitatively evaluate the tip fields and assess the possibility of fault activation. The mining depth, fluid pressure, fault dip, and fault length were analyzed and the advance of a working face was simulated to determine whether underground mining would cause fault activation.
机译:由施工,地震或采矿引起的断层激活会在地下矿井中造成灾难性的突水事件。断层激活通常是由断层尖端的应力集中引起的,因此,在本研究中,建立了具有隐性断层的典型地下采场的计算模型,以定量评估断层尖端应力场的应力集中的大小。 。使用扩展有限元方法和断裂力学进行了数值模拟。使用相互作用积分方法获得代表应力集中大小的应力强度因子,以定量评估尖端场并评估断层激活的可能性。分析了采矿深度,流体压力,断层倾角和断层长度,并模拟了工作面的前进,以确定地下采矿是否会引起断层活化。

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