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Numerical modeling of rockburst near fault zones in deep tunnels

机译:深隧道故障区附近岩爆附近的数值模拟

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Many factors that influence rockburst damage have been identified but the mechanism that drives rockburst is not fully understood. Weak planes such as faults and shears have been observed near excavation boundaries in many rockbursts and these structures must have played a role in these rockburst events. In this paper, the role of weak planes around tunnels in rockburst occurrence and damage was studied. A heterogeneous Abaqus2Dexplicit code was used to simulate dynamic rock failure in deep tunnels. Firstly, rock failure near the excavation boundary of a tunnel without any adjacent weak plane was modeled. Then a fault with different lengths, inclinations, and distances to the tunnel was added to the model and its effect on rock failure was simulated. The velocity and the released kinetic energy of failed rocks, the failure zone around the tunnel, and the deformed mesh were studied to identify stable and unstable rock failures. The simulation results showed that the presence of a fault near a tunnel could induce rockburst if the fault is positioned and oriented in such a way that it promotes high stress and low mine system stiffness. Finally, a rockburst occurred in the Jinping II drainage tunnel with an observed nearby fault was simulated. The modeling results captured the field observation of rockburst damage and confirmed that the presence of weak planes in the vicinity of deep tunnels is a necessary condition for the occurrence of rockburst. The presented methodology in this paper can be useful for rockburst anticipation and control during mining and tunneling in highly stressed grounds.
机译:有许多影响摇滚爆发损害的因素已经确定,但是驱动摇滚笨蛋的机制尚未完全理解。在许多摇滚爆发中,在挖掘边界附近观察到弱飞机,如故障和剪切,这些结构必须在这些摇滚乐事件中发挥作用。在本文中,研究了突然隧道隧道隧道隧道突破的作用。异构的ABAQUS2Dexplexpleic代码用于模拟深隧道中的动态岩石故障。首先,建模没有任何相邻弱平面的隧道的挖掘边界附近的岩石故障。然后将具有不同长度,倾斜和隧道距离的故障被添加到模型中,并模拟其对岩石故障的影响。研究了失败岩石的速度和释放的动能,隧道周围的故障区和变形网格进行了研究,以识别稳定和不稳定的岩石故障。仿真结果表明,如果故障定位并以其促进高应力和低矿井系统刚度的方式,隧道附近的故障存在可能会诱导摇滚乐。最后,模拟了Jinping II排水隧道中发生的摇滚乐,并模拟了附近的故障。建模结果捕获了岩爆损伤的现场观察,并证实了深隧道附近的弱平面的存在是摇滚爆发的必要条件。本文的呈现方法可用于在高强调场地采矿和隧道期间摇滚笨拙的预期和控制。

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