首页> 外文会议>Pan-American conference on unsaturated soils >The Failure Characteristics and Evolution Mechanism of the Expansive Soil Trench Slope
【24h】

The Failure Characteristics and Evolution Mechanism of the Expansive Soil Trench Slope

机译:膨胀土Tre沟边坡破坏特征及演化机理

获取原文

摘要

Study is conducted based on the summative results of 19 landslides in the middle route of the South-to-North water transfer project, Nanyang section. A series of geological survey has been done on the characteristics and evolution mechanism of expansive soil landslide in the area by excavating trench slides. The results show that most landslides in the area occurred in the quaternary Middle Pleistocene alluvial-diluvial strata. Slope stability is jointly controlled by vertical joints in the upper layer soil and the gently dipping large fissures at the toe of the slope. Sliding surface is composed by the steep tilting fissures at the trailing edge of slope and large gently dipping fissures at the slope toe. Excavation unloading effect causes the vertical joints open, which destroys the integrity of the slope soil and serves as the main channel for the water. There is a high humidity area 4-8 m below the surface of slope. Soil in the area is weak and the sliding surface develops in it. Wetting and drying cycle caused by climate and excavation unloading leads to the vertical fissures to open and propagate deep into the slope. This effect causes a dramatic attenuation of soil strength. The vertical fissures connected with the large gently dipping fissures at the toe of the slope eventually. The slope slides after these fissures are filled with water after the occurrence of strong lasting precipitation.
机译:根据南阳市南水北调中线19条滑坡的总结结果进行了研究。通过开挖沟渠滑坡,对该地区膨胀土滑坡的特征和演化机理进行了一系列的地质调查。结果表明,该地区大部分滑坡发生在第四纪中更新世冲积—洪积层。边坡的稳定性是由上层土壤中的垂直缝和边坡脚趾处的大裂缝缓缓地共同控制的。滑动面是由斜坡后缘的陡峭倾斜裂缝和坡脚趾上的大而缓和的倾斜裂缝组成的。开挖卸荷效应导致垂直节理张开,这破坏了斜坡土壤的完整性,并成为水的主要通道。在斜坡表面以下4-8 m处有一个高湿度区域。该地区的土壤薄弱,并在其中形成滑动面。由气候和开挖卸载引起的干湿循环导致垂直裂缝打开并深入斜坡。这种作用导致土壤强度的显着降低。垂直裂缝最终与倾斜脚趾处的较大的缓倾裂缝相连。在这些裂缝产生强烈的持续降水之后,在斜坡上充满水之后,斜坡便开始滑动。

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