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Response of building to shallow tunnel excavation in different types of soil

机译:不同类型土壤中建筑物对浅埋隧道开挖的响应

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This research investigates the tunneling induced building responses in different types of soil via finite element (FE) method. Different simulation techniques, namely contraction factor method and stress reduction method, are applied in FE-model to simulate the volume loss during the excavation process. A wide range of soils, including limestone, dense/loose sand, stiff/soft clay and silt, are taken into account in this study. The considered building responses include the surface settlement profile, position of inflection point, deflection ratio in sagging/hogging zone, horizontal compressive/tensile strain, etc. The relationship between these building responses and soil/building properties is investigated. Local sensitivity analysis is further applied to distinguish the relative importance of soil stiffness and strength in determining the deflection ratio of the building settlement profile. The results show that soil properties play a significant role in determining the building responses. Generally, soil with larger initial elastic modulus results in higher deflection ratios and horizontal strains of the building. Furthermore, in order to provide a guideline for practical tunneling design, an upper bound design curve of modification factor to greenfield deflection ratio or horizontal strain for different types of building is derived in both sagging and hogging zones.
机译:本研究通过有限元(FE)方法研究了不同类型土壤中的隧道诱发建筑物响应。在有限元模型中采用了不同的模拟技术,即收缩系数法和应力减小法,以模拟开挖过程中的体积损失。在这项研究中考虑了广泛的土壤,包括石灰石,致密/松散的沙子,坚硬/软粘土和淤泥。所考虑的建筑物响应包括表面沉降曲线,拐点位置,下垂/弯曲区的挠度比,水平压缩/拉伸应变等。研究了这些建筑物响应与土壤/建筑物特性之间的关系。在确定建筑物沉降曲线的挠度比时,还应用局部敏感性分析来区分土壤刚度和强度的相对重要性。结果表明,土壤特性在确定建筑响应中起着重要作用。通常,具有较大初始弹性模量的土壤会导致较高的挠度比和建筑物的水平应变。此外,为了为实际的隧道设计提供指导,在下陷区和下陷区均得出了针对不同类型建筑物的修正系数与未开发区挠度比或水平应变的上限设计曲线。

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