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首页> 外文期刊>Canadian Geotechnical Journal >Numerical verification of the Concentric Arches model for geosynthetic-reinforced pile-supported embankments: applicability and limitations
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Numerical verification of the Concentric Arches model for geosynthetic-reinforced pile-supported embankments: applicability and limitations

机译:地磁增强桩支撑堤的同心拱门模型的数值验证:适用性与限制

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摘要

In this study, a series of three-dimensional finite element simulations of a geosynthetic-reinforced pile-supported embankment design was conducted. The effects of subsoil stiffness, friction and dilation angles of the fill, fill height, pile spacing, surcharge load on the embankment, and anisotropic tensile stiffness of the geosynthetic reinforcement (GR), ground reaction curve, and interfacial responses between the fill material and CR were scrutinized. Numerical results showed how transfer of the vertical load towards the piles (load part A) and the related soil arches change with subsoil stiffness, geometric parameters, and vertical pressure on the embankment. Furthermore, the vertical load transferred through the GR (load part B) is reduced significantly with increasing subsoil stiffness, while the load part carried by the subsoil (load part C) increases. The numerical results showed that the vertical stress distribution on the GR changes from an inversetriangular shape for low subsoil stiffness to a uniform shape for high subsoil stiffness. This matches perfectly with the Concentric Arches model. For low subsoil stiffness, the tensile strains of the GR are concentrated at the corner of a square pile cap.
机译:在本研究中,对土工合成材料加筋桩支护路堤设计进行了一系列三维有限元模拟。研究了底土刚度、填料的摩擦角和膨胀角、填料高度、桩间距、路堤上的超载荷载、土工合成钢筋(GR)的各向异性拉伸刚度、地面反应曲线以及填料和CR之间的界面反应的影响。数值结果显示了垂直荷载向桩(荷载A部分)和相关土拱的传递如何随地基刚度、几何参数和路堤上的垂直压力而变化。此外,随着底土刚度的增加,通过GR传递的垂直荷载(荷载部分B)显著降低,而底土承载的荷载部分(荷载部分C)增加。数值计算结果表明,对于较低的地基刚度,GR上的垂直应力分布从倒三角形状变化为均匀形状,对于较高的地基刚度。这与同心拱门模型完美匹配。对于较低的地基刚度,GR的拉伸应变集中在方形桩帽的拐角处。

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