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3D coupled mechanical and hydraulic modeling of a geosynthetic-reinforced deep mixed column-supported embankment

机译:土工合成纤维加筋深混合柱支撑路堤的3D耦合机械和水力建模

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Numerical studies were conducted to improve the understanding of the behavior of geosynthetic-reinforced column-supported embankments. Due to the complexity of the problem, so far, consolidation process and three-dimensional patterns of columns have not been well simulated in most published numerical studies. As a result, the time-dependant behavior and the serviceability of this system have not been well evaluated. In this study, a three-dimensional coupled mechanical and hydraulic modeling was conducted using FLAC3D to consider consolidation and three-dimensional arrangement of columns. This study was based on a well-documented bridge approach embankment reinforced by a layer of geotextile and supported by deep mixed (DM) columns. The foundation soils including soft clay and silt, the embankment fill, and the deep mixed columns were modeled as linearly elastic-perfectly plastic materials with Mohr-Coulomb failure criteria. The geotextile reinforcement was simulated by geogrid elements incorporated in the FLAC3D software, which can sustain in-plane tensile force only. The staged construction was simulated by building the embankment in lifts. The duration of each lift was the same as the actual construction time plus the lapse time between two consecutive stages. The development of settlement and tension in the geotextile with time is compared with the long-term monitoring data and yields good agreement. The generation and dissipation of excess pore water pressure during and after construction are presented and discussed.
机译:进行了数值研究,以增进对土工合成纤维增强柱支撑路堤性能的理解。由于问题的复杂性,到目前为止,在大多数已发表的数值研究中都没有很好地模拟固结过程和圆柱的三维模式。结果,该系统的时间依赖性行为和可维护性尚未得到很好的评估。在这项研究中,使用FLAC3D进行了三维耦合的机械和液压建模,以考虑固结和圆柱的三维布置。这项研究基于有据可查的桥梁方法路堤,该路堤由一层土工织物加固,并由深层混合(DM)柱支撑。基础土包括软土和淤泥,路堤填充物和深层混合柱被建模为线性弹性完美塑性材料,并具有Mohr-Coulomb破坏准则。土工布加固是通过FLAC3D软件中包含的土工格栅元素进行模拟的,土工格栅只能承受面内张力。通过在电梯中建造路堤来模拟分阶段施工。每部电梯的持续时间与实际施工时间加上两个连续阶段之间的经过时间相同。将土工布中沉降和张力随时间的变化与长期监测数据进行比较,得出了很好的一致性。介绍并讨论了施工过程中和施工后多余孔隙水压力的产生和消散。

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