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Simplified analytical method for calculating the maximum shear stress of nail-soil interface

机译:计算指甲-土界面最大剪应力的简化分析方法

摘要

This paper describes a simplified analytical method that considers postinstallation normal stress, normal stress due to soil dilation, and grouting pressure when calculating the maximum shear stress of the nail-soil interface. Systematic test results from two previous publications were used to verify the accuracy of the proposed method. The Hong Kong design method was also used to determine the maximum shear stress of the nail-soil interface. These analyses confirmed that the experimental data were more accurately predicted by the proposed analytical method. An extensive parametric study was conducted to examine the effects of several key parameters on the maximum shear stress. It was observed that when there was no grouting pressure, maximum shear stress increased with increasing overburden pressure, failure surface distance, dilation angle, or decreased drill hole radius. Analysis using the proposed model also demonstrates that grouting and overburden pressures share an interactional effect. The larger the grouting pressure, the greater the influence of the overburden pressure; and, consequently, the larger the maximum shear stress at the nail-soil interface.
机译:本文介绍了一种简化的分析方法,该方法在计算指甲-土界面的最大剪切应力时会考虑安装后的正应力,由于土壤膨胀引起的正应力和灌浆压力。来自两个以前的出版物的系统测试结果被用来验证该方法的准确性。香港设计方法还用于确定指甲-土壤界面的最大剪切应力。这些分析证实,所提出的分析方法可以更准确地预测实验数据。进行了广泛的参数研究,以检验几个关键参数对最大剪切应力的影响。可以看到,当没有灌浆压力时,最大剪切应力随着上覆压力,破坏面距离,膨胀角或钻孔半径的减小而增加。使用建议的模型进行的分析还表明,灌浆压力和覆土压力共同作用。灌浆压力越大,上覆压力的影响越大。因此,指甲-土壤界面处的最大剪切应力越大。

著录项

  • 作者

    Yin JH; Hong CY; Zhou WH;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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