长江科学院院报 ›› 2009, Vol. 26 ›› Issue (11): 31-36.

• 南水北调工程“膨胀土技术”专辑 • 上一篇    下一篇

土工格栅对膨胀岩吸湿变形规律的影响研究

 丁金华, 周武华, 刘军, 龚壁卫   

  • 出版日期:2009-11-01 发布日期:2012-07-05

Test Research on Deformation Law of Expansive Rock Water absorbing with Geogrid-reinforcement

 DING  Jin-Hua, ZHOU  Wu-Hua, LIU  Jun, GONG  Bi-Wei-   

  • Online:2009-11-01 Published:2012-07-05

摘要: 采用室内物理模型试验对多种类型土工格栅与膨胀岩相互作用条件下的土体变形特性进行研究。研究表明,在吸湿条件下,膨胀岩产生明显的膨胀变形,土体产生张拉性裂缝而破坏。铺设土工格栅后,可以使膨胀岩的侧向变形明显减小,但对土体垂直沉降的影响不大。同时,格栅可以有效抑制裂缝的发生和发展,并改变了膨胀岩膨胀变形发展的模式和规律,更重要的是,土工格栅对土体吸湿后水分的运移过程也产生了明显的影响,表现为在一维入渗条件下,格栅加筋使得水分更难以向土体内入渗,浅层含水量开始变化以及稳定的时间都远远大于未加筋土,土体内含水量场的分布与未加筋土完全不同。

Abstract: Physical model tests are made to study the deformation characteristics of several geogrid-reinforced expansive rocks due to moisture absorption. Research result indicates that obvious expansion deformation takes place in expansive rock under the condition of moisture absorption, which causes soil mass to be damaged due to tensile crack. Geogrids embedded make it possible to obviously decrease the lateral deformation of expansive rock, but have little influence on the vertical settlement of soil. At the same time, geogrids can effectively restrain the occurrence and development of cracks, and alter the development law of expansion deformation of expansive rock. More importantly, geogrids exert significant effect on the transport process of moisture content. This shows that under the condition of one-dimensional infiltration, geogrid-reinforcement makes moisture content more difficultly to infiltrate toward soil mass, the time when moisture content in shallow layer begins to change and keeps stable is longer than unreinforced soil, distribution of moisture content field within reinforced-soil is completely different from that within unreinforced soil.