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Assessment of damages in fault rupture-shallow foundation interaction due to the existence of underground structures

机译:地下结构的存在对断层-浅层基础相互作用破坏的评估

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Permanent ground deformations induced by fault movements can be damaging to engineering structures built on or near active faults. Most experimental and numerical studies have so far confirmed the fact that the presence of a tunnel in the vicinity of an active fault can change the zone of large deformations on the ground surface. This paper investigates the effect of tunnel existence on the interaction between a reverse fault and a shallow foundation using the finite element method. This paper also analyzes the manner in which a foundation in faulting zones responds to various parameters such as foundation position, tunnel depth and diameter, and the position of the tunnel relative to the rupture path in free-field condition. The mechanical response of the tunnel lining is also examined. The results show that the existence of a tunnel, in some cases, can increase the foundation rotation. Varying the tunnel diameter did not cause any significant changes in the general pattern of failure and the location of shear planes near the tunnel. However, a tunnel with a larger diameter causes the rupture to deviate and propagate in a wider area of the soil layer. It was found that increasing the tunnel depth extends a branch of the rupture path towards the footwall and expands the shear zone on a wider area. In the end, this paper examines the effectiveness of expanded polystyrene sheet (EPS) walls in mitigating the surface fault rupture and reducing the foundation rotation.
机译:断层运动引起的永久性地面变形可能会对活动断层之上或附近构造的工程结构造成损害。迄今为止,大多数实验和数值研究都证实了这样一个事实,即在活动断层附近存在隧道会改变地表大变形区域。本文利用有限元方法研究了隧道存在对反断层与浅层基础相互作用的影响。本文还分析了断层带中地基对各种参数的响应方式,例如地基位置,隧道深度和直径,以及自由场条件下隧道相对于破裂路径的位置。还检查了隧道衬砌的机械响应。结果表明,在某些情况下,隧道的存在可以增加基础的旋转度。改变隧道直径并不会导致一般破坏模式和隧道附近剪切平面的位置发生任何重大变化。但是,直径较大的隧道会导致破裂变形并在更大范围的土壤层中传播。已发现增加隧道深度将破裂路径的分支延伸至底壁,并在更宽的区域上扩展了剪切带。最后,本文研究了膨胀聚苯乙烯板(EPS)墙在减轻表面断层破裂和减少地基旋转方面的有效性。

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