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2D and 3D Numerical Modeling of Combined Surcharge and Vacuum Preloading with Vertical Drains

机译:垂直排水联合施加超载和真空的2D和3D数值模型

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摘要

This paper presents a three-dimensional (3D) and two-dimensional (2D) numerical analysis of a case study of a combined vacuum and surcharge preloading project for a storage yard at Tianjin Port, China. At this site, a vacuum pressure of 80 kPa and a fill surcharge of 50 kPa was applied on top of the 20m thick soft soil layer through prefabricated vertical drains (PVD) to achieve the desired settlements and to avoid embankment instability. In 3D analysis, the actual shape of PVDs and their installation pattern with the in-situ soil parameters were simulated. In contrast, the validity of 2D-plane strain analysis using equivalent permeability and transformed unit cell geometry was examined. In both cases, the vacuum pressure along the drain length was assumed to be constant as substantiated by the field observations. The finite element code, ABAQUS, using the modified Cam-clay model was used in the numerical analysis. The predictions of settlement, pore water pressure and lateral displacement were compared with the available field data, and an acceptable agreement was achieved for both 2D and 3D numerical analyses. It is found that both 3D and equivalent 2D analyses give similar consolidation responses at the vertical cross section where the lateral strain along the longitudinal axis is zero. The influence of vacuum may extend more than 10m from the embankment toe, where the lateral movement should be monitored carefully during the consolidation period to avoid any damage to adjacent structures.
机译:本文针对中国天津港一个堆场的真空和超载联合预载项目的案例研究进行了三维(3D)和二维(2D)数值分析。在该位置,通过预制的垂直排水管(PVD)在20m厚的软土层上施加80 kPa的真空压力和50 kPa的填充附加费,以实现所需的沉降并避免路堤的不稳定性。在3D分析中,模拟了PVD的实际形状及其在原位土壤参数下的安装方式。相反,检查了使用等效渗透率和变换后的晶胞几何形状的二维平面应变分析的有效性。在两种情况下,沿排水管长度的真空压力都被认为是恒定的,这由现场观察证实。数值分析中使用了使用改进的Cam-clay模型的有限元代码ABAQUS。将沉降,孔隙水压力和侧向位移的预测与可用的现场数据进行了比较,并且对于2D和3D数值分析均达成了可接受的协议。发现3D分析和等效的2D分析在垂直截面(沿纵轴的侧向应变为零)的垂直截面上给出相似的固结响应。真空的影响可能会从路堤脚趾延伸超过10m,在固结期间应仔细监测横向运动,以免损坏相邻结构。

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