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Numerical Simulation Study on Lateral Displacement of Pile Foundation and Construction Process under Stacking Loads

机译:堆垛荷载下桩基侧向位移与施工过程的数值模拟研究

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Lateral displacement of pile foundation is crucial to the safety of an overall structure. In this study, a numerical simulation on the lateral displacement of pile foundation under stacking loads was conducted to determine its relation with different influencing factors. Simulation results demonstrated that stacking loads at the pile side mostly influence the lateral displacement of pile foundation. The lateral displacement of pile foundation increases by one order of magnitude when the stacking loads increase from 100 kPa to 300 kPa. Other influencing factors are less important than stacking loads. Lateral displacements of the pile body and at the pile top can be reduced effectively by increasing the deformation modulus of surface soil mass, reducing the thickness of soft soil, and expanding pile diameter. Our analysis indicates that a nonlinear relationship exists between the lateral displacement at the pile top and the pile diameter. The lateral resistance of the pile body can be enhanced by coupling the stacking load along piles and the axial force at the pile top. An actual large-scale engineering project was chosen to simulate the effects of postconstructed embankment on lateral displacement and axial force of bridge pile foundation under different construction conditions and to obtain the lateral displacement of the pile body and the negative frictional resistance caused by soft soil compression under stacking loads. On the basis of the calculated results, engineering safety and stability were evaluated, and a guide for the design and construction was proposed.
机译:桩基的横向位移对于整个结构的安全至关重要。在这项研究中,对桩基在荷载作用下的横向位移进行了数值模拟,以确定其与不同影响因素的关系。仿真结果表明,桩侧的堆积载荷主要影响桩基的横向位移。当堆垛荷载从100 kPa增加到300 kPa时,桩基的横向位移增加一个数量级。其他影响因素不如堆积负荷重要。通过增加表层土体的变形模量,减小软土的厚度以及扩大桩的直径,可以有效地减少桩体和桩顶的横向位移。我们的分析表明,桩顶的横向位移与桩直径之间存在非线性关系。桩身的侧向阻力可通过将沿桩的堆垛载荷与桩顶处的轴向力耦合来增强。选择了一个实际的大型工程项目来模拟后筑路堤对不同施工条件下桥梁桩基础的侧向位移和轴向力的影响,并获得桩体的侧向位移和软土压缩引起的负摩擦阻力在堆垛载荷下。在计算结果的基础上,对工程安全性和稳定性进行了评估,并提出了设计施工指导。

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