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Coupled mechanical and hydraulic modeling of a geosynthetic-reinforced and pile-supported embankment

机译:土工合成材料加筋桩路堤的机械和水力耦合建模

摘要

The increasing application of conventional geosynthetic-reinforced and pile-supported (GRPS) embankments (called CT embankments) for ground improvement has resulted in many problems, for example, intolerable total or differential settlements, large lateral displacements, local instabilities, and low efficiencies of the geosynthetic. In this study, a new ground improvement technique, referred to as fixed-geosynthetic-reinforced and pile-supported embankment (called FGT embankment), is proposed. A two-dimensional numerical simulation that uses coupled mechanical and hydraulic modeling is conducted to investigate the performance of an FGT embankment. A sensitivity analysis is performed to investigate influencing factors, such as the tensile stiffness of the geosynthetic, the pile wall spacing, the elastic modulus of the soft clay, the elastic modulus of the pile wall and the pile wall width. The numerical results show that the FGT embankment can sufficiently reduce the total and differential settlements, lateral displacement and excess pore water pressure, and enhance the stability of the embankment.
机译:传统的土工合成材料加桩支撑(GRPS)路堤(称为CT路堤)在地面改良中的应用不断增加,导致了许多问题,例如,无法忍受的全部或差异沉降,大的侧向位移,局部失稳以及路堤的低效率土工合成材料。在这项研究中,提出了一种新的地面改良技术,称为固定土工合成材料加筋支撑路堤(称为FGT路堤)。进行了二维数值模拟,该模拟使用耦合的机械和液压模型来研究FGT路堤的性能。进行敏感性分析以研究影响因素,例如土工合成材料的拉伸刚度,桩壁间距,软粘土的弹性模量,桩壁的弹性模量和桩壁的宽度。数值结果表明,FGT路堤能够充分减少路堤的总沉降量和差异沉降量,侧向位移和过大的孔隙水压力,增强路堤的稳定性。

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