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Three-dimensional numerical simulation and earth pressure analysis on double-row piles with consideration of spatial effects

机译:考虑到空间效应的双排桩的三维数值模拟与土压分析

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As a new kind of technology in retaining structures, the characteristics of double-row piles are significantly affected by spatial effects. In this paper, double-row piles as a retaining structure are simulated numerically in three-dimension by finite element software PLAXIS 3D FOUNDATION. The behavior differences of piles in different positions around the foundation pit are analyzed. By changing the parameters, including the length-width ratio, the excavation depth, the distance between rows and the diameter of piles, the variations of the lateral deformation, the bending moment and the earth pressure around the piles are determined. The reasonable values of parameters and some suggestions with consideration of earth pressure are proposed for the design of double-row piles as a retaining structure. The results show that the lateral deformation and bending moment are the largest in the middle of long side of the foundation pit, which is identified as the most unfavorable position. It is indicated that the earth pressure between rows above pit bottom is close to active earth pressure, while the earth pressure between rows under pit bottom is close to static earth pressure. It is suggested that 1/2–2/3 of pile length, 0.6–1.2 m, 3d–6d, and 2d–2.5d be chosen as embedded depth of piles, diameter of piles, distance between rows, and distance between piles, respectively, where d is the pile diameter.
机译:作为一种在保留结构中的新技术,双排桩的特性受到空间效应的显着影响。在本文中,通过有限元软件PlaxIS 3D基础,在三维中以三维模拟双排堆。分析了基坑周围不同位置的桩的行为差异。通过改变包括长度宽度比,挖掘深度,行之间的距离和桩的直径之间的参数,确定横向变形,弯曲力矩和围绕桩周围的距离的变化。提出了考虑接地压力的参数的合理值和一些建议,用于设计双排桩作为保持结构。结果表明,横向变形和弯矩是基坑长边中间的最大值,其被识别为最不利的位置。结果表明,坑底部的行之间的接地压力接近有源接地压力,而坑底下的行之间的接地压力接近静态压力。建议选择1/2-2 / 3桩长度,0.6-1.2米,3D-6D和2D-2.5D作为嵌入式深度的桩,桩的直径,行之间的距离以及桩之间的距离,分别为D是桩直径。

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