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Three-Dimensional Numerical Modelling of Geosynthetic Reinforced Pile-Supported Embankments over Soft Ground

机译:柔软地土工合成桩支撑堤的三维数值模型

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Construction of embankments over soft ground is a challenging task for geotechnical engineers. This is mainly due to the undesirable characteristics of soft soil such as low bearing capacity, insufficient shear strength and very high compressibility which can result in bearing failure, large settlements and local or global instability. Geosynthetic reinforced pile-supported (GRPS) embankments provide an effective solution to overcome these issues. With the use of this technique a higher portion of the embankment load can be transferred to the piles rather than the soft foundation soil, thus reducing the stresses applied on to the soft soil. The performance of a GRPS embankment can vary with different parameters such as pile spacing, pile diameter, stiffness of the geosynthetic layer, elastic modulus of the piles and height of the embankment. This study presents the results of a parametric study using the finite element modelling to investigate the behaviour of a GRPS embankment. Three-dimensional numerical modelling is carried out considering two rows of piles to investigate both longitudinal and transverse load transfer mechanisms. The variation of maximum settlement at the crest of the embankment, tension in the geosynthetic layer and the stress concentration ratio with the earlier mentioned parameters are discussed in the paper.
机译:在软基路堤施工是岩土工程师一项艰巨的任务。这主要是由于在软土的不良的特性如低的承载能力,剪切强度不足和非常高的可压缩性,这会导致轴承失效,大住区和本地或全局的不稳定。土工合成材料加固桩基(GRPS)堤防提供了解决这些问题的有效解决方案。通过使用该技术的堤负载的较高部分可以被转移到桩而不是软地基,从而降低了应力施加到软土。一个GRPS堤的性能可以用不同的参数,如桩间距,桩直径,土工合成层的刚度,桩的弹性模量和堤的高度而变化。本研究提出利用有限元建模来调查GRPS堤的行为参数研究的结果。三维数值模拟进行考虑桩两行调查纵向和横向负荷传递机构。最大沉降在堤的波峰的变化,张力在土工合成层,并与前面提到的参数的应力集中比在纸张进行了讨论。

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