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Soil-pile separation effect on the performance of a pile group under static and dynamic lateral loads

机译:静,动态侧向荷载作用下土桩分离对群桩性能的影响

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The effect of soil-pile separation is studied with respect to the performance of a laterally loaded pile group. Full-scale tests, which consist of a combination of a single and a 3 × 5 group pile under static and dynamic lateral loads, present a unique opportunity and allow a rigorous study without arbitrary parameter back-fitting. The coupled soil-pile system is idealized through two-dimensional finite elements with soil models idealized by a hyperbolic-type multiple shear mechanism. Nonlinear spring elements are used to idealize the soil-pile interaction through a hysteretic nonlinear loaddisplacement relationship. Joint elements with a separation-contact mechanism are used to idealize the separation effect at the soil-pile interface. Ignoring soil-pile separation in static tests overestimates the ultimate lateral load-carrying capacity by 43% for a single pile and 73% for the trailing pile in a closely spaced pile group. Moreover, neglecting soil-pile separation in dynamic tests overestimates the total group load-deflection curve in both the loading and unloading phases.
机译:相对于侧向荷载桩组的性能,研究了土桩分离的影响。由静态和动态横向载荷下的单个桩和3×5组桩组合而成的全面试验提供了独特的机会,并且可以进行严格的研究,而无需进行任意参数的拟合。耦合土-桩系统是通过二维有限元理想化的,而土壤模型是通过双曲线型多重剪切机制理想化的。非线性弹簧元件用于通过滞后非线性载荷-位移关系理想化土-桩相互作用。具有分离接触机制的关节元件用于理想化土-桩界面的分离效果。在静力测试中忽略土桩分离,在紧密排列的桩组中,单个桩的最终侧向承载能力高估了43%,而尾随桩的最终横向承载力则高了73%。此外,在动态测试中忽略土桩分离会高估加载和卸载阶段的总荷载-挠度曲线。

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