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李西斌, 吴金耀. 高速列车荷载下桩承加筋路堤变形机制数值分析[J]. 岩土工程学报, 2011, 33(sup2): 232-237.
引用本文: 李西斌, 吴金耀. 高速列车荷载下桩承加筋路堤变形机制数值分析[J]. 岩土工程学报, 2011, 33(sup2): 232-237.
LI Xi-bin, WU Jin-yao. Deformation mechanism of geosynthetic reinforced pile supported embankment under high-speed train loads[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 232-237.
Citation: LI Xi-bin, WU Jin-yao. Deformation mechanism of geosynthetic reinforced pile supported embankment under high-speed train loads[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 232-237.

高速列车荷载下桩承加筋路堤变形机制数值分析

Deformation mechanism of geosynthetic reinforced pile supported embankment under high-speed train loads

  • 摘要: 桩承加筋路堤是近来发展起来的软土地基处理技术,具有用桩数量少,节约工程成本,加快工程进度的优点。采用有限元方法研究了高速列车荷载下桩承加筋路堤的变形规律,分析了软土的变形模量、桩弹性模量、格栅弹性模量和桩间距对路堤各部分沉降以及最大侧向位移的影响。分析结果表明,上述四个因素对桩顶沉降、填土顶面沉降、桩间土沉降、路堤最大侧向位移都有一定的影响。

     

    Abstract: The geosynthetic reinforced pile supported embankment is a new ground treatment technology developed in recent years. The advantages of this technology include reduction of number of piles, decrease of project costs and increase of construction speed. Finite element method is used to analyze the deformations in geosynthetic reinforced pile supported embankments under high-speed train loads. The influences of soft soil deformation modulus, elastic modulus of piles, elastic modulus of geogrid and the space between piles on the settlement of each part of the embankment and the maximum lateral displacement of the embankment are investigated. The results show that the four factors have effects on the pile settlement, the surface settlement of the filling soil, the displacement of the soil between piles and the maximum lateral displacement of the embankment.

     

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