首页> 外文期刊>Canadian Geotechnical Journal >Displacement-based design procedure for slope-stabilizing piles
【24h】

Displacement-based design procedure for slope-stabilizing piles

机译:基于位移的边坡稳定桩设计程序

获取原文
获取原文并翻译 | 示例
           

摘要

Vertical piles are widely employed around the world to prevent landslides, and they are commonly designed with the aim of reducing the soil displacement rate well before the activation of the potential failure mechanism. The design strategies usually adopted in engineering practice are often based on oversimplified approaches, not taking into account any realistic interaction mechanism between pile and soil, and they are not suitable for predicting the effectiveness of the mitigation structure in terms of reduction in the soil displacement rate. This paper attempts to address the problem by proposing a simplified displacement-based numerical procedure, providing engineers with a simple, physically based and easy-to-run tool, particularly useful in pre-dimensioning phases for the system. The importance of a correct description of the soil-pile mechanical interaction and even of possible nonlinearities in pile behaviour is quantitatively discussed by means of numerical analyses based on simplified geometries, proving that the soil-structure interaction forces cannot a priori be foreseen, but that their evaluation requires a displacement-based procedure. The proposed approach appears to be very useful even for prediction of the long-term behaviour of the system. This framework allows the capture of even the remarkable influence that the shape of the soil displacement profile has on the mechanical response of the system, thus implying that a reliable on-site monitoring system is necessary for the optimum design of the structure.
机译:竖桩在世界范围内广泛用于防止滑坡,通常设计竖桩的目的是在激活潜在破坏机制之前,尽早降低土壤的位移率。工程实践中通常采用的设计策略通常是基于过于简化的方法,没有考虑桩与土壤之间的任何现实相互作用机制,并且它们不适合根据减少土壤位移率来预测减缓结构的有效性。 。本文试图通过提出一种简化的基于位移的数值程序来解决该问题,为工程师提供一个简单,基于物理的,易于运行的工具,在系统的预尺寸阶段特别有用。通过基于简化几何形状的数值分析,定量讨论了正确描述土-桩机械相互作用甚至是桩行为中可能存在的非线性的重要性,证明了无法预先预测土与结构的相互作用力,但是他们的评估需要基于位移的程序。即使对于预测系统的长期行为,所提出的方法似乎也非常有用。该框架甚至可以捕获土壤位移剖面的形状对系统的机械响应的显着影响,从而暗示着对结构进行最佳设计所必需的可靠的现场监测系统。

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