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Nonlinear subgrade modulus of sandy soils for analysis of piled raft foundations

机译:桩筏基础分析的砂土非线性路基模量

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Continuum-based three-dimensional (3D) elasto-plastic finite element (FE) analyses of piled raft foundations (PRPs) resting on sandy soils and subjected to uniformly distributed vertical loads are performed using the software Abaqus, and equations are developed for estimating the nonlinear soil subgrade moduli (spring stiffnesses) beneath the raft, beneath the pile base, and along the pile shaft. The unified clay and sand model (CASM) is used as the soil constitutive model in the continuum-based 3D FE analysis. Four different types of sand with three different states (loose, medium and dense) and twenty different configurations of PRFs with rectangular, square, and strip rafts are considered in this study. The developed equations of the raft and pile spring stiffnesses are subsequently used in a soil spring-based nonlinear FE analysis of PRFs performed using a structural engineering software. It is shown through verification and validation studies that the developed equations of the raft and pile spring stiffnesses can be reliably used in spring-based FE analysis of PRFs, instead of the computationally expensive continuum-based 3D FE analysis, for quick and accurate estimate of PRF responses. The developed equations of spring stiffnesses are applicable to PRFs that are similar in dimensions considered in this study.
机译:使用软件Abaqus对基于沙土并承受均匀分布垂直载荷的桩筏基础(PRP)进行基于连续体的三维(3D)弹塑性有限元(FE)分析,并开发了方程式来估算筏下方,桩基下方以及沿桩身的非线性土基模量(弹簧刚度)。在基于连续体的3D FE分析中,统一的砂土模型(CASM)被用作土壤本构模型。在这项研究中,考虑了四种具有三种不同状态(松散,中等和致密)的砂类型,以及具有矩形,方形和条形筏的PRF的二十种不同配置。所开发的筏和桩弹簧刚度方程随后用于使用结构工程软件进行的基于PRF的土弹簧非线性有限元分析。通过验证和验证研究表明,所开发的筏和桩弹簧刚度方程可以可靠地用于PRF的基于弹簧的有限元分析,而不是基于计算的基于连续体的昂贵3D FE分析,可以快速,准确地估算PRF响应。所开发的弹簧刚度方程适用于本研究中考虑的相似尺寸的PRF。

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