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Impedance Functions for Double-DShaped Caisson Foundations

机译:双D'Aped Caisson基础的阻抗功能

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摘要

This article proposes solutions for stiffness estimation of Double-D-shaped caisson foundations embedded in three different types of ground profiles (stiffness variation along the depth: homogeneous, linear, and parabolic). The approach is based on three-dimensional finite element analyses and is in line with the methodology adopted in the Eurocode 8-Part 5 (2004) lumped spring approach. The method of extraction of various stiffness values from the finite element model is described, followed by obtainment of the closed-form solutions. Parametric study revealed the nominal effect of the embedment length of Double-D caissons, and hence only the width and diameter effects are included in the suggested formulations. The obtained results are presented in terms of multiplication factors for Double-D caissons. Final impedance functions for a given width and diameter of a Double-D caisson can be conveniently estimated by multiplying the proposed functions to the circular shaft solutions available in literature. The applicability of the proposed formulations is demonstrated by considering a typical bridge pier supported by Double-D caissons. The proposed formulations require a minimum amount of input parameters and can be used during the tender design to arrive at the required geometry of such foundations.
机译:本文提出了嵌入三种不同类型地层嵌入的双D形沉箱基础静脉估计的解决方案(沿深度的刚度变化:均匀,线性和抛物线)。该方法基于三维有限元分析,并符合欧元展8部分5(2004)集集弹簧方法中采用的方法。描述了从有限元模型中提取各种刚度值的方法,然后获得闭合溶液。参数研究揭示了双D沉成形的嵌入长度的标称效果,因此只有宽度和直径效应包括在建议的配方中。获得的结果是以双D分离的乘法因子呈现。通过将所提出的功能乘以文献中可用的圆形轴解决方案,可以方便地估计用于给定宽度和双D分离直径的最终阻抗函数。通过考虑由双D沉箱支撑的典型桥接码头来证明所提出的配方的适用性。所提出的配方需要最小的输入参数,并且可以在温柔设计期间使用,以达到此类基础的所需几何体。

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