首页> 外文会议>International symposium on landslides;Associazione Geotechnica Italiana >Effects of mica content on hydraulic anisotropy of unsaturated soil
【24h】

Effects of mica content on hydraulic anisotropy of unsaturated soil

机译:云母含量对非饱和土水力各向异性的影响

获取原文

摘要

Climate change has affected many aspects of life, including weather-induced landslides around the world. As landslides often cause serious damage, preventive methods such as slope cover systems become more relevant. A good understanding of unsaturated soil mechanics, particularly of hydraulic anisotropy, will be beneficial to the existing cover system. This paper focuses on investigating hydraulic anisotropy, in saturated and unsaturated conditions, of soil having different mica contents. Past research has indicated that the mica content in soil affects its shear strength anisotropy significantly. An initial sand-kaolin mixture without mica was specified and subsequently, coarse mica was added (sand-kaolin mixtures with 9% and 20% mica contents, respectively). Two orientations were tested in this study: horizontal-layering and vertical-layering, obtained by static compaction. Laboratory experiments, including drying Soil-Water Characteristic Curves (SWCCs) and saturated permeability tests were carried out. Specimens with different layering yielded identical SWCCs and had an equalization time ratio similar to the hydraulic anisotropy. The initial sand-kaolin mixture had a unimodal SWCC, whereas the sand-kaolin mixtures with 9% and 20% mica contents had bimodal SWCCs. The sand-kaolin mixture with 9% mica content had a slightly higher dry density and a higher hydraulic anisotropy compared to those of the initial sand-kaolin mixture. In addition, the sand-kaolin mixture with 20% mica content was found to have a lower dry density and a lower hydraulic anisotropy compared to those of the initial sand-kaolin mixture. This study concludes that mica content in soil may increase or decrease hydraulic anisotropy of the soil when compared to the initial soil without mica.
机译:气候变化影响了生活的许多方面,包括世界范围内由天气引起的滑坡。由于滑坡经常造成严重破坏,因此诸如斜坡覆盖系统之类的预防方法变得更加重要。很好地理解非饱和土的力学特性,特别是对水力各向异性的理解,将对现有的覆盖系统有利。本文着重研究云母含量不同的土壤在饱和和非饱和条件下的水力各向异性。过去的研究表明,土壤中的云母含量会显着影响其剪切强度各向异性。指定了最初的没有云母的沙子-高岭土混合物,随后添加了粗云母(分别具有9%和20%的云母含量的沙子-高岭土混合物)。在这项研究中测试了两个方向:通过静态压实获得的水平方向和垂直方向。进行了包括干燥的土壤-水特征曲线(SWCC)和饱和渗透率测试在内的实验室实验。具有不同分层的样品产生相同的SWCC,并且具有与水力各向异性相似的均化时间比。最初的砂-高岭土混合物具有单峰SWCC,而云母含量为9%和20%的砂-高岭土混合物具有双峰SWCC。与初始的沙-高岭土混合物相比,云母含量为9%的沙-高岭土混合物的干密度和水力各向异性稍高。另外,发现云母含量为20%的沙-高岭土混合物与初始沙-高岭土混合物相比具有更低的干密度和更低的水力各向异性。这项研究得出的结论是,与最初没有云母的土壤相比,土壤中的云母含量可能会增加或减少土壤的水力各向异性。

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