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Influence of deep excavation induced ground movements on adjacent piles

机译:深基坑诱发地基运动对邻近桩基的影响

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In urban areas, excavations for cut-and-cover tunnels and basement construction cause detrimental effects on adjacent existing piles. Hence quantifying the excavation induced lateral deformations and bending moments on piles are important to ensure the stability of structures. In this paper, behaviour of a single pile subjected to excavation induced ground movements is analysed using the finite element method, which has the ability to simulate the construction sequence comprising soil excavation, deformations due to dewatering within the excavation and installation of struts. A fully coupled analysis is carried out based on the effective stress principle. The numerical model was verified using the centrifuge test data found in the literature. A parametric study was carried out to establish the excavation induced pile behaviour varying the depth of the excavation, soil properties, wall support system, pile fixity conditions and pile location with respect to the excavation. Increasing axial load does not have a significant influence on the pile behaviour. However, pile head fixity condition, and stiffness and spacing of the wall support system have a significant influence on the pile behaviour adjacent to the excavation. Finally, based on the parametric study, a set of design charts are developed to predict the pile behaviour by taking into account the depth of excavation, undrained shear strength, width of the pile, spring stiffness, spacing of vertical supports, and unsupported depth of the excavation. The capability of the proposed design charts are demonstrated using a three-dimensional finite element analysis, a case study from the literature and a previously published simplified analysis procedure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在城市地区,开挖隧道和地下室的施工会对相邻的现有桩造成不利影响。因此,量化开挖引起的桩侧向变形和弯矩对于确保结构的稳定性很重要。在本文中,使用有限元方法分析了受开挖引起的地面运动的单个桩的行为,该方法具有模拟施工顺序的能力,包括土方开挖,开挖过程中因脱水引起的变形以及支杆的安装。基于有效应力原理进行完全耦合分析。使用文献中的离心测试数据验证了数值模型。进行了参数研究,以建立开挖引起的桩的行为,该行为改变了开挖的深度,土壤特性,墙体支撑系统,桩的固定性条件以及相对于开挖的桩位置。轴向载荷的增加不会对桩的性能产生重大影响。但是,桩头的固定状况,墙体支撑系统的刚度和间距对邻近基坑的桩身行为有重大影响。最后,在参数研究的基础上,开发了一组设计图,以通过考虑开挖深度,不排水的抗剪强度,桩的宽度,弹簧刚度,垂直支撑的间距以及无支撑的深度来预测桩的行为。发掘。使用三维有限元分析,文献中的案例研究和先前发布的简化分析程序来证明所提出的设计图的功能。 (C)2015 Elsevier Ltd.保留所有权利。

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