...
首页> 外文期刊>Soils and foundations >MECHANISM OF BEARING CAPACITY OF SPREAD FOOTINGS REINFORCED WITH MICROPILES
【24h】

MECHANISM OF BEARING CAPACITY OF SPREAD FOOTINGS REINFORCED WITH MICROPILES

机译:微粒增强点差承载力的机理

获取原文
获取原文并翻译 | 示例
           

摘要

The Hyogoken-Nambu Earthquake in 1995 caused extensive damages to the foundations of bridges. Ever since, methods to improve the bearing capacity of existing foundations have become an important aspect of foundation engineering in Japan. Micropiles are considered to provide promising solutions. The mechanism which enhances the bearing capacity of surface footings reinforced with micropiles is the subject of investigation in this study. As an initial phase, model tests were conducted to understand the load-displacement behavior of surface footings with and without micropiles on loose, medium dense, and dense layers of sands. Salient factors which influence the behavior of the footings were selected and their influence on bearing capacity was examined through a comprehensive series of model tests. Notable improvements in the bearing capacity of surface footings reinforced with vertical micropile groups were observed in the case of dense sand which is dilative during shear. To assess quantitatively the degree of improvement in the bearing capacity of surface footings reinforced with micropiles, an index R called "Network Effect Index" was introduced in this study. The index R of unity means that the bearing capacity of footings reinforced with micropiles is simply equal to the summation of the individual value of the surface footing and that of the micropile group. An index R of more than two is achieved in this study where surface footings reinforced with a group of vertical micropiles bear on a dense layer of dilative sand. By contrast, with loose and medium dense sand, which are contractive in nature, the index R is found to be less than unity.
机译:1995年的兵库县-南武地震对桥梁基础造成了广泛的破坏。从那时起,提高现有地基承载力的方法已成为日本基础工程的重要方面。微型桩被认为可以提供有前途的解决方案。增强微桩加固的地面基础承载力的机制是本研究的主题。作为初始阶段,进行了模型测试,以了解在松散,中等密实和密实的沙层上有无微桩的情况下地面基础的荷载-位移行为。选择了影响立脚行为的显着因素,并通过一系列综合模型测试研究了它们对承载力的影响。在致密砂的情况下,在剪切过程中会发散,观察到用竖向微桩加固的表面基础的承载力有了显着改善。为了定量评估用微桩加固的表面基础的承载力的改善程度,本研究引入了一个称为“网络效应指数”的指数R。指数R表示通过微桩加固的地基的承载力仅等于表面地基和微桩组的单个值的总和。在这项研究中,获得的指数R大于2,其中用一组垂直的微桩加固的地基支撑在致密的膨胀砂层上。相反,对于本质上收缩的疏松和中等密度的沙子,发现指数R小于1。

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