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Numerical investigations of pile load distribution in pile group foundation subjected to vertical load and large moment

机译:竖向荷载和大弯矩作用下群桩基础中桩荷载分布的数值研究

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This paper presents a numerical study of pile force distribution in a pile group foundation subjected to vertical load and large moment. The physical modeling of a pile foundation for a wind turbine is analyzed using 3D finite element software, PLAXIS 3D. The soil profile consists of several clay layers, which are modeled as Mohr-Coulomb material in an undrained condition. The piles in the pile group foundation are modeled as special elements called embedded pile elements. To model the problem of a pile group foundation, a small gap is created between the pile cap and underlying soil. The pile cap is modeled as a rigid plate element connected to each pile by a hinge. As a result, applied vertical load and large moment are transferred only to piles without any load sharing to underlying soil. Results of the study focus on pile load distribution for the square shape of a pile group foundation. Mathematical expression is proposed to describe pile force distribution for the cases of vertical load and large moment and purely vertical load.
机译:本文对竖向荷载和大弯矩作用下的群桩基础中桩力分布进行了数值研究。使用3D有限元软件PLAXIS 3D分析了风力涡轮机桩基的物理模型。土壤剖面由几个黏土层组成,在不排水条件下以莫尔-库仑材料为模型。桩组基础中的桩被建模为称为嵌入式桩元素的特殊元素。为了模拟桩基基础问题,在桩帽和下面的土壤之间创建一个小间隙。桩帽被建模为通过铰链连接到每个桩的刚性板状元件。结果,施加的垂直载荷和大力矩仅传递给桩,而没有任何载荷分担给下面的土壤。研究结果集中于桩基基础的方形桩荷载分布。提出了数学表达式来描述竖向荷载,大弯矩和纯竖向荷载作用下的桩力分布。

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