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Analysis of Damage Mechanism of Tunnel Lining Structure under the Coupling Action of Active Fault

机译:耦合故障耦合作用下隧道衬砌结构损伤机理分析

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摘要

To reveal the failure mechanism of tunnel structure under active fault movement, based on the pseudostatic elastoplastic finite element method, the failure modes of the tunnel lining are studied under different movement ratios of strike-slip faults and thrust faults with 45° dip angle by using numerical simulation. The results show that the range of significant lining failure section can be determined according to any direction of the coupling fault movement decomposition direction, and the damage effect is determined by the overall movement amount of the coupling fault. The significant damage area of the lining under the action of the coupling fault is the same as the area of deformation, which mainly manifests as tensile failure. Compressive failure occurs in the boundary area between the fracture zone and the hanging wall and foot wall. The plastic strain is the largest in the area where the arch waist and the arch bottom intersect. The development of tunnel lining plastic zone under coupling fault is from arch top and arch bottom to both sides of the arch waist. The development of the plastic zone under active fault is mainly determined by the form of fault with a large ratio. The research results can provide a reference for the design and safety evaluation of tunnel crossing active faults.
机译:为了揭示主动故障运动下隧道结构的故障机制,基于假性弹塑性有限元方法,通过使用的碰撞故障和45°倾角的不同运动比和推力故障进行隧道衬里的故障模式数值模拟。结果表明,可以根据耦合故障运动分解方向的任何方向确定显着的衬里故障部分的范围,并且通过耦合故障的整体移动量来确定损坏效果。在耦合故障的作用下,衬里的显着损伤区域与变形面积相同,主要表现为拉伸衰竭。裂缝区和悬挂壁和脚壁之间的边界区域发生压缩失败。塑料应变是拱腰和拱底相交的区域中最大的。隧道衬砌塑料区的开发在耦合断层下的是拱顶和拱底两侧的拱门臀部。主动故障下塑料区的开发主要由具有大比率的故障形式决定。研究结果可以为隧道交叉有源故障的设计和安全评估提供参考。

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