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Two and Three-Dimensional Modeling of DM Columns under Embankments

机译:堤坝下DM色谱柱的两个和三维建模

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Deep mixed (DM) columns have been commonly used to increase bearing capacity of soft soil and reduce total and differential settlements of embankments. In most analyses (especially numerical analyses) of embankments over DM columns, two-dimensional models are commonly used for simplicity. However, it is not clear how well the two-dimensional (2D) models represent the behavior of embankments over DM columns that are typically installed in a three-dimensional (3D) pattern, such as a square or triangular pattern. In this study, 2D and 3D numerical analyses were conducted to show the comparisons of their results including maximum settlements and vertical stresses. In the 2D analysis, individual DM columns and the soil between these columns are converted to several DM walls parallel to the centerline of the embankment. The DM walls are assumed to have equivalent moduli or strength averaged from the individual DM columns and the soil between these columns based on their areas and moduli or strengths. The comparisons show that the 2D model calculates slightly (conservatively) larger maximum settlements at the base of the embankment than the 3D model if the DM walls/columns are within the elastic limit. However, the 2D and 3D models produce very different results of vertical stresses on the top of DM walls/columns.
机译:深厚的混合(DM)柱常用于增加软土的承载力,降低堤防的总和差别沉降。在DM列的大多数分析中(特别是数值分析),通常用于简单起见的二维模型。然而,目前尚不清楚二维(2D)模型如何代表通常安装在三维(3D)模式中的DM列的行为,例如正方形或三角形图案。在该研究中,进行了2D和3D数值分析以显示其结果的比较,包括最大沉降和垂直应力。在2D分析中,各个DM色谱柱和这些柱之间的土壤被转换为与堤防中心线平行的几个DM壁。假设DM壁具有基于其区域和模态或强度从各个DM柱和这些柱之间的土壤平均的等效模量或强度。比较表明,如果DM壁/列在弹性极限内,2D模型在路堤基部略微计算略微(保守)更大的最大沉降比3D模型。然而,2D和3D模型在DM壁/柱顶部产生的垂直应力产生的非常不同的结果。

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