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Simple formulas for estimating a lumped parameter model to reproduce impedances of end-bearing pile foundations

机译:估算集总参数模型以重现端承桩基础阻抗的简单公式

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The paper presents simple formulas to evaluate parameters of a lumped system reproducing the frequency-dependent dynamic stiffness of end-bearing pile foundations. The model can be implemented in commercial finite element software and allows performing inertial soil-structure interaction analyses of structures considering the coupled roto-translational, vertical and torsional behaviour of the soil-foundation system. Pile groups arranged in a square layout are considered; the soil profile is constituted by a homogeneous deformable soil layer overlying a bedrock where piles are socked for a fixed length. Formulas are calibrated with a nonlinear least square procedure, based on data provided by an extensive non-dimensional parametric analysis of the soil-foundation systems, performed with a Winlder's type model, previously developed by the authors, which assumes soil and piles to behave linearly. Firstly, the suitability of the adopted numerical tools in capturing the dynamic stiffness of end-bearing foundations is proven. Then, capabilities of the proposed formulas in estimating parameters of the best lumped systems are shown, and, for some case studies, comparisons of non-null terms of the impedance matrix obtained through the best lumped system, the one computed through the formulas, and the impedances resulting from the dynamic analyses, are presented. Finally, some applications of the proposed formulas in the framework of the seismic soil-structure interaction analysis of bridges are shown to demonstrate the capability of the adopted lumped system and the formula efficiency in assuring a reliable evaluation of the superstructure seismic response, with respect to that obtained from a more rigorous approach.
机译:本文提出了简单的公式来评估集总系统的参数,该系统可再现端承桩基础的频率相关动态刚度。该模型可以在商业有限元软件中实现,并考虑到土壤-基础系统的旋转-平移,垂直和扭转行为,可以对结构进行惯性土壤-结构相互作用分析。考虑以正方形布局排列的桩组;土壤剖面由覆盖基岩的均匀可变形土壤层组成,在基岩中将桩固定固定长度。使用非线性最小二乘法对公式进行校准,该方法基于对土壤基础系统的广泛的无量纲参数分析提供的数据,并使用作者先前开发的Winlder类型模型执行,该模型假定土壤和桩的行为为线性。首先,证明了所采用的数值工具在获取端承基的动态刚度方面的适用性。然后,显示了拟议公式在估计最佳集总系统参数中的能力,并且在某些案例研究中,比较了通过最佳集总系统获得的阻抗矩阵的非零项,通过公式计算的非零项以及给出了由动态分析产生的阻抗。最后,在桥梁的地震土-结构相互作用分析框架中,所提出的公式的一些应用表明了所采用集总系统的能力和公式效率,以确保可靠地评估上部结构的地震响应。通过更严格的方法获得的结果。

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