首页> 外文会议>International Conference on Geological Engineering >Study on the Ultimate bearing capacity of Layered foundation rock masses with Distinct Element Method
【24h】

Study on the Ultimate bearing capacity of Layered foundation rock masses with Distinct Element Method

机译:不同元素法分层基础岩体终极承载力的研究

获取原文

摘要

Evaluating the bearing capacity of a surface footing resting on a rock mass is a complex problem. This may be attributed to the fact that rock masses are discontinuous, inhomogeneous and anisotropic media. As a traditional method, the rock masses are considered as equivalent homogenous and isotropic continuum. And the ultimate bearing capacity of foundation rock mass is calculated with limit equilibrium theory. However, this method can't represent the real mechanical behaviors of foundation rock masses. In practices, it is needed that values of ultimate bearing capacity of foundation rock masses should be more precise. Then, a Distinct Element Method is adopted to research the stress-displacement characteristics of strip footings on horizontal and vertical layered rock masses. The numerical results of ultimate bearing capacity are discussed. And the effects of the terrane thickness on the ultimate bearing capacity are analyzed. The results show that, for isotropic foundation rock masses, the numerical result of ultimate bearing capacity with the distinct element method is approximate to the mean value of its limit equilibrium upper and lower bounds; the ultimate bearing capacity of horizontal layered foundation rock masses are lightly affected by terrane thickness, and shear failure mainly appear in foundation rock masses; but the ultimate bearing capacity of vertical layered foundation rock masses are affected strongly by terrane thickness, and with the terrane thickness reducing, the failure model of foundation rock mass is gradually changed from shear failure to uniaxial compression failure.
机译:评估搁置在岩体上的表面脚的承载力是一个复杂的问题。这可能归因于岩体是不连续,不均匀和各向异性介质的事实。作为一种传统方法,岩体被认为是等效的均质和各向同性连续体。利用极限平衡理论计算基础岩体的最终承载力。然而,这种方法不能代表基础岩体的真正机械行为。在实践中,需要基础岩体的最终承载能力值应更加精确。然后,采用了不同的元素方法来研究水平和垂直分层岩体上带材的应力 - 位移特性。讨论了最终承载能力的数值结果。分析了地兰厚度对最终承载能力的影响。结果表明,对于各向同性基础岩体,具有不同元素法的最终承载能力的数值结果近似于其极限平衡和下界的平均值;水平分层基础岩体的最终承载力受到煤层厚度的轻微影响,剪切失效主要出现在基础岩体中;但垂直分层基础岩石质量的最终承载力受到煤层厚度的强烈影响,并且随着地产厚度的减少,基础岩体的故障模型从剪切失效逐渐变化到单轴压缩失效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号