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3-DIMENSIONAL NUMERICAL MODELLING OF SAND BED REINFORCED WITH 3D GEOGRIDS OF TRIANGULAR FORM

机译:三角形三角形三维地质格栅增强沙床的三维数值模型

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摘要

In this paper, the bearing capacity improvement of a square footing resting on sand bed reinforced with 3D geogrids of triangular form is numerically studied with the help of Plaxis 3D software. The performance of 3D geogrid reinforced sand is also compared with planar geogrid reinforced sand to understand its effectiveness. In the numerical modelling, the soil behaviour is simulated by linear elastic-perfectly plastic Mohr-Coulomb model. The 3Dgeogrid and planar geogrid is modelled using geogrid structural elements available in the software. The model was validated with the experimental results and found to be in fairly good agreement with each other. The effect of various parameters on the behaviour of reinforced soil system was also investigated. It was found that the bearing capacity of multilayered planar geogrid reinforced sand bed improved by 3.68 times, while, the 3D geogrid reinforced sand bed shows 6.8 times improvement compared to the unreinforced sand bed.
机译:在本文中,在Plaxis 3D软件的帮助下,用三角形形式加强了三角形形式的砂床上搁在砂床上的轴承能力。 与平面地质格栅增强沙子相比,3D地质格栅增强砂的性能也与理解其有效性相比。 在数值建模中,通过线性弹性 - 完美的塑料MoHR-Coulomb模型模拟土壤行为。 3DGeoGrid和Planar GeoGrid使用软件中可用的地理格结构元素进行建模。 该模型用实验结果验证,发现彼此相当愉快。 还研究了各种参数对钢筋土壤系统行为的影响。 结果发现,与未原始的砂床相比,多层平面地理格栅增强床的承载力提高了3.68倍,而3D地质格栅增强床显示出6.8倍改善。

著录项

  • 来源
    《Australian Geomechanics》 |2019年第2期|共12页
  • 作者单位

    Department of Civil Engineering National Institute of Technology Calicut India;

    Department of Civil Engineering NITK Surathkal Karnataka India;

    Department of Civil Engineering National Institute of Technology Calicut India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质力学;
  • 关键词

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