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Numerical Analysis of Embankments Supported by Geosynthetics over Drilled Shafts in Karst Terrains

机译:岩溶地形钻孔竖井土工合成材料支撑路堤的数值分析。

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This paper presents a new method to remedy a common sinkhole problem in karst terrains by using geosynthetics over drilled shafts to support an embankment. Numerical analysis using FLAC~(2D) software was conducted to verify the effectiveness of this method. In the numerical analysis, foundation soil, rock, and a drilled shaft wall were assumed to be elastic while embankment fill was assumed to be linearly elastic-perfectly plastic with a Mohr-Coulomb failure criterion. A geosynthetic layer above the drilled shaft wall was modeled using cable elements. The construction of the embankment was simulated in three stages. The numerical results include the settlement at the base of the embankment, the tension in the geosynthetic layer, and the axial force in the drilled shaft. A parametric study was conducted to investigate the effects of the void size and the tensile stiffness of geosynthetic. The numerical analysis demonstrated that this proposed method could be effective in maintaining the stability of the embankment over the sinkhole. This paper presents a preliminary study using geosynthetics and drilled shafts to mitigate the embankment over a small sinkhole. Further study is under way to investigate embankments over large sinkholes with multiple drilled shaft walls.
机译:本文提出了一种新方法,可以通过在钻探井筒上使用土工合成材料来支撑路堤,来解决喀斯特地形中常见的塌方问题。使用FLAC〜(2D)软件进行了数值分析,以验证该方法的有效性。在数值分析中,假定基础土,岩石和钻孔竖井壁是弹性的,而路堤填土则假定为线性弹性完美塑性,且符合Mohr-Coulomb破坏准则。使用电缆单元对钻孔竖井壁上方的土工合成层进行建模。路堤的施工过程分三个阶段进行了模拟。数值结果包括路堤底部的沉降,土工合成材料层中的张力以及钻探井筒中的轴向力。进行了参数研究,以研究土工合成材料的空隙尺寸和拉伸刚度的影响。数值分析表明,该方法可以有效地保持路基在沉陷区的稳定性。本文提出了使用土工合成材料和钻探井筒来减轻小污水坑路堤的初步研究。正在进行进一步研究,以研究具有多个钻孔竖井壁的大水坑上的路堤。

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