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The Effects of Multipropped Deep Excavation-Induced Ground Movements on Adjacent High-Rise Building Founded on Piled Raft in Sand

机译:多层深挖诱导地面运动对彼德拉夫堆积筏的相邻高层建筑的影响

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In this paper, a three-dimensional numerical parametric study was conducted to predict the deformation mechanism of a 20-storey building sitting on a (4?×?4) piled raft to an adjacent 25?m deep basement excavation. The influences of different excavation depths were investigated. An advanced hypoplastic sand model (which is capable of taking small-strain stiffness into account) was adopted to capture soil behaviour. The computed results revealed that excavation adjacent to a building resting on the piled raft caused significant settlement, differential settlement, lateral deflection, and interstorey drift in the building. With settlement due to working load (i.e., 4.8dp%), the total settlements of the building (7.8dp%) exceed the maximum allowable foundation settlement (i.e., 50?mm). In addition, substantial bending moment, shear forces, and changes in axial load distribution along pile length were induced. The findings from this study revealed that the building and pile responses are significantly influenced by the excavation depth.
机译:在本文中,进行了三维数值参数研究,以预测坐在(4Ω·λ4)堆叠筏上的20层式建筑物的变形机构到相邻的25Ω深的地下室挖掘。研究了不同挖掘深度的影响。采用高级发育砂砂模型(能够考虑小应变刚度)来捕获土壤行为。计算结果表明,与堆叠筏上的建筑物相邻的挖掘导致建筑物中的显着沉降,差动沉降,横向偏转和沉饰漂移。由于工作负荷(即4.8dp%),建筑物的总沉降(7.8dp%)超过最大允许基础结算(即50毫米)。另外,诱导沿着桩长的大大弯矩,剪切力和轴向载荷分布的变化。本研究的调查结果显示,建筑物和桩响应受到挖掘深度的显着影响。

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