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Study on the performance of the micropile-mechanically stabilized earth wall

机译:微型桩-机械稳定土墙的性能研究

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摘要

The Micropile-Mechanically Stabilized Earth (MSE) wall,specially designed for mountain roads,is proposed to improve the MSE wall local stability,global stability and impact resistance of roadside barriers.Model tests and the corresponding numerical modeling were conducted to validate the serviceability of the Micropile-MSE wall and the reliability of the numerical method.Then,a parametric study of the stress and deformation of Micropile-MSE wall based on the backfill strength and interfacial friction angle between backfill and backslope is conducted to evaluate its performance.The test results indicate that the surcharge-induced horizontal earth pressure,base pressure and lateral displacement of the wall panel of Micropile-MSE wall decrease.The corresponding numerical results are nearly equal to the measured values.The basic failure mode of MSE wall in steep terrain is the sliding of backfill along the backslope,while A-frame style micropiles are capable of preventing the sliding trend.The maximum resultant displacement can be decreased by 6.25% to 46.9% based on different interfacial friction angles,and the displacement can be reduced by 6% ~ 56.1% based on different backfill strengths.Furthermore,the reduction increases when the interfacial friction angle and internal friction angle of backfill decrease.In addition,the lateral displacement of wall panel,the deformation of backfill decrease and the tension strain of geogrid obviously,which guarantees the MSE wall functions and provides good conditions for mountain roads.
机译:提出了专门为山区道路设计的微机械稳定土墙(MSE),以提高MSE墙的局部稳定性,整体稳定性和路障的抗冲击性。进行了模型测试和相应的数值模拟,以验证路堤的可使用性。然后,基于回填强度和回填与后坡之间的界面摩擦角,对微型桩-MSE墙的应力和变形进行了参数研究,以评估其性能。结果表明,Micropile-MSE墙体墙体的附加载荷引起的水平土压力,基础压力和侧向位移减小,相应的数值结果几乎等于实测值.MSE墙体在陡峭地形中的基本破坏模式为回填料沿着后坡的滑动,而A型框架微型桩能够防止滑动趋势根据不同的界面摩擦角,最大总位移可降低6.25%至46.9%,根据不同的回填强度,最大位移可降低6%〜56.1%。此外,当界面摩擦角和另外,墙板的侧向位移,回填变形和土工格栅的拉应变明显降低,保证了MSE墙的功能,为山区道路提供了良好的条件。

著录项

  • 来源
    《山地科学学报(英文版)》 |2018年第4期|825-844|共20页
  • 作者单位

    Key Laboratory of Geohazard Prevention of Hilly Mountains, Ministry of Land and Resources of China, Fuzhou,350002, China;

    Department of Civil, Environmental &Architectural Engineering, University of Colorado, Boulder, CO, 80309, USA;

    College of Civil & Transportation Engineering, Hohai University, Nanjing, 210098, China;

    Key Laboratory of New Technology for Construction of Cities in Mountain Area, Chongqing University, Chongqing,400045, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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