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Influence of a nonlinear failure criterion on the bearing capacity of a strip footing resting on rock mass using a lower bound approach

机译:非线性破坏准则对基于下界法的岩体上条形基础的承载力的影响

摘要

The strength envelope of almost all geomaterials is nonlinear when one considers a wide range of stresses. Therefore, a nonlinear failure criterion needs to be used in stability analysis whenever the effects of nonlinearity are too significant to be neglected. This paper presents a lower bound solution to the bearing capacity calculation of a strip footing resting on a homogenous weightless rock mass using the nonlinear Hoek-Brown (HB) failure criterion. Two types of admissible stress fields are used to develop solutions. The first stress field has three stress legs. The second stress field has a spiral-like shape with n stress legs, where n may vary from 9 to 18 000 (even to infinity). Using two admissible stress fields, equations are derived and used for the calculation of lower bound bearing capacity values of a strip footing on rock mass. The influences of the admissible stress leg number n and the material parameter s in the nonlinear HB failure criterion are investigated. It is found that the lower bound bearing capacity calculated using the spiral-like shape admissible stress field approaches to the true optimum value as the stress leg number n increases, and the nonlinear material parameter s has a strong influence on the bearing capacity of the footing.
机译:当考虑广泛的应力时,几乎所有土工材料的强度包络都是非线性的。因此,每当非线性的影响太大而不能忽略时,就需要在稳定性分析中使用非线性破坏准则。本文提出了基于非线性Hoek-Brown(HB)破坏准则的均质失重岩体上条形基础的承载力计算的下界解。两种类型的容许应力场用于制定解决方案。第一应力场具有三个应力腿。第二应力场为具有n个应力分支的螺旋形形状,其中n可以从9到18 000(甚至到无穷大)变化。利用两个允许的应力场,得出方程式,并将其用于计算岩体上条形基础的下限承载力值。研究了非线性HB破坏准则中容许应力腿数n和材料参数s的影响。可以发现,随着应力支腿数n的增加,利用螺旋形容许应力场计算的下极限承载力接近真实的最优值,非线性材料参数s对基脚的承载力有很大的影响。 。

著录项

  • 作者

    Yang X; Yin JH; Li L;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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