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Analysis Method for Laterally Loaded Pile Groups Using an Advanced Modeling of Reinforced Concrete Sections

机译:钢筋混凝土截面高级建模的水平荷载群分析方法

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摘要

A Boundary Element Method (BEM) approach was developed for the analysis of pile groups. The proposed method includes: the non-linear behavior of the soil by a hyperbolic modulus reduction curve; the non-linear response of reinforced concrete pile sections, also taking into account the influence of tension stiffening; the influence of suction by increasing the stiffness of shallow portions of soil and modeled using the Modified Kovacs model; pile group shadowing effect, modeled using an approach similar to that proposed in the Strain Wedge Model for pile groups analyses. The proposed BEM method saves computational effort compared to more sophisticated codes such as VERSAT-P3D, PLAXIS 3D and FLAC-3D, and provides reliable results using input data from a standard site investigation. The reliability of this method was verified by comparing results from data from full scale and centrifuge tests on single piles and pile groups. A comparison is presented between measured and computed data on a laterally loaded fixed-head pile group composed by reinforced concrete bored piles. The results of the proposed method are shown to be in good agreement with those obtained in situ.
机译:开发了边界元方法(BEM)方法来分析桩组。所提出的方法包括:通过双曲模量减少曲线的非线性行为;钢筋混凝土桩截面的非线性响应,同时考虑了拉伸刚度的影响;通过增加土壤浅层部分的刚度对吸力的影响,并使用改良的Kovacs模型进行建模;桩群阴影效应,其建模方法与应变楔模型中提出的桩群分析方法相似。与更复杂的代码(例如VERSAT-P3D,PLAXIS 3D和FLAC-3D)相比,提出的BEM方法可节省计算工作量,并使用来自标准现场调查的输入数据提供可靠的结果。通过比较单桩和桩组的全尺寸和离心试验数据的结果,验证了该方法的可靠性。在由钢筋混凝土钻孔桩组成的侧向荷载固定桩群中,实测数据与计算数据进行了比较。结果表明,所提方法的结果与现场获得的结果吻合良好。

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