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Influence of pile radius on the pile head kinematic bending strains of end- bearing pile groups

机译:桩身半径对端承桩群桩头运动弯曲应变的影响

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An analytical solution is developed for the kinematic response of a group of end-bearing fixed-head cylindrical vertical piles embedded in a homogeneous elastic stratum subjected to vertically-propagating harmonic shear waves. Pile-soil interaction, incorporating group effects in a pile group, is represented through a simplified beam-on-dynamic-Winkler-foundation (BDWF) model with realistic frequency-dependent springs and dashpots. Expressions for interaction factors and curvature ratios atop the foundation are presented considering different boundary conditions at the tip of the piles. To investigate the fundamental characteristics of kinematic bending in end-bearing pile groups when kinematic interaction dominates, kinematic bending strains at the head of each pile are expressed in terms of the slenderness ratio. The methodology is verified by comparison against results of a coupled finite element-boundary element (FE-BE) model. Obtained results indicate that kinematic bending strains of end-bearing single piles and piles in a group follow the same trend, with values being almost coincident in the case of slender piles. In addition, boundary conditions at the pile tip markedly affect the kinematic bending at the pile head.
机译:针对一组埋在均质弹性地层中的端承式固定头圆柱形竖向桩在垂直传播的谐波剪切波作用下的运动响应,提出了一种解析解。通过简化的动态Winkler地基梁(BDWF)模型(具有实际的频率相关的弹簧和减震器)来表示桩-土相互作用,并在桩组中纳入组效应。考虑桩端的不同边界条件,给出了地基顶部的相互作用因子和曲率比的表达式。为了研究在运动相互作用主导的情况下端承桩组的运动弯曲的基本特征,以细长比表示每个桩头的运动弯曲应变。通过与有限元边界元耦合(FE-BE)模型的结果进行比较来验证该方法。所得结果表明,端承式单桩和一组桩的运动弯曲应变遵循相同的趋势,对于细长桩,其值几乎是一致的。此外,桩端的边界条件明显影响了桩头的运动学弯曲。

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