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A cantilever approach to estimate bending stiffness of buildings affected by tunnelling

机译:悬臂法估算受隧道影响的建筑物的弯曲刚度

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摘要

The evaluation of the effect of tunnel construction on buildings is a problem being faced by engineers around the world. Building bending stiffness is an important parameter in tunnel-soil-structure interaction analyses. The construction of a new tunnel influences an existing building via induced ground movements, and the existence of a building also affects ground displacements due to tunnelling via its stiffness and weight. The magnitude of the effect depends on the properties of the building and foundation as well as the complex soil-structure interactions that occur. In this paper, an approach is proposed in which the building response to tunnelling is related to the bending of a cantilever beam and empirical-type relationships are developed to predict building bending stiffness. This approach is relevant to cases where the building is perpendicular to the tunnel axis and its nearest edge does not overlap more than half of the tunnel cross-section. Rigorous finite element analyses are used to evaluate the response of buildings to ground displacements and expressions are provided which relate three-dimensional building bending stiffness to a simple beam theory expression. The results show that lower storeys have a proportionally higher stiffness effect than higher storeys. In addition, the parameters that affect the global behaviour of the building, such as component stiffness and geometry, are studied. The suggested approach provides a relatively quick and easy way of accurately evaluating building bending stiffness for use within tunnel-soil-structure interaction analyses.
机译:隧道建设对建筑物的影响评估是世界各地工程师面临的问题。建筑抗弯刚度是隧道-土-结构相互作用分析中的重要参数。新隧道的建造会通过引起的地面运动影响现有建筑物,建筑物的存在也会通过其刚度和重量影响隧道施工引起的地面位移。影响的大小取决于建筑物和地基的特性,以及发生的复杂的土壤-结构相互作用。在本文中,提出了一种方法,其中建筑物对隧道的响应与悬臂梁的弯曲有关,并建立了经验类型关系来预测建筑物的弯曲刚度。此方法与建筑物垂直于隧道轴线且其最近边缘不重叠隧道横截面一半以上的情况有关。使用严格的有限元分析来评估建筑物对地面位移的响应,并提供了将三维建筑物抗弯刚度与简单梁理论表达式相关联的表达式。结果表明,较低的楼层比较高的楼层具有较高的刚度效果。此外,还研究了影响建筑物整体性能的参数,例如构件刚度和几何形状。所建议的方法为准确评估建筑物的弯曲刚度提供了一种相对简便的方法,可用于隧道-土壤-结构相互作用分析。

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