中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Shear Strength Characteristics of Clay-Gravel Layer and Its Slope Failure Law and Mechanism

文献类型:期刊论文

作者Dai, Zhangjun; Huang, Kang; Jiang, Lingfa; Li, Jian; Yu, Fei; Chen, Shanxiong
刊名FRONTIERS IN EARTH SCIENCE
出版日期2022-03-15
卷号10
关键词clay-gravel layer shear zone shear strength slope erosion failure mechanism
英文摘要The Anqing Formation clay-gravel layer is widely distributed in the Anqing area of the upper reaches of the Wanjiang River. It is a typical soil-rock mixture composed of gravel and clay. The poor engineering properties of the clay-gravel layer are the main factors for the failure of the slope. On the basis of regional geological survey, the clay-gravel threshold, clay mineral composition and cementation characteristics of clay-gravel layer were studied. The in-situ horizontal push-shear tests under different gravel content, water environment and overlying load were designed and carried out, and its shear failure mode and strength were analyzed. The study found that the shear zone was in the shape of a broken line and was controlled by the particle size and distribution of the gravel. The shear strength of the clay-gravel layer is relatively high in the natural state due to the structure of the gravel and the friction and cementation force between the clay and the gravel. Water had the greatest influence on the shear strength of the clay-gravel layer, and the overlying load affected its shear strength within a certain range. The indoor rainfall erosion model test of the clay-gravel slope was carried out, and the failure and instability modes and mechanisms of the slope with different gravel contents were studied. When the gravel content was 30%, the failure of the slope surface was the development of gullies. The erosion damage process was similar to the soil slope. When the gravel content was 50%, affected by the distribution of gravel, the slope failure was manifested as the development of erosion pits, followed by local slumps, and finally the overall sliding in layers. When the gravel content was 70%, the clay particles on the slope were quickly washed away by the water flow, and the gravel skeleton of the slope formed a temporary relatively stable structure. After being disturbed, the gravel layer collapsed as a whole.
学科主题Geology
语种英语
出版者FRONTIERS MEDIA SA
WOS记录号WOS:000777531800001
源URL[http://119.78.100.198/handle/2S6PX9GI/34865]  
专题中科院武汉岩土力学所
作者单位1.Chinese Academy of Sciences; Wuhan Institute of Rock & Soil Mechanics, CAS;
2.Chinese Academy of Sciences; University of Chinese Academy of Sciences, CAS
推荐引用方式
GB/T 7714
Dai, Zhangjun,Huang, Kang,Jiang, Lingfa,et al. Shear Strength Characteristics of Clay-Gravel Layer and Its Slope Failure Law and Mechanism[J]. FRONTIERS IN EARTH SCIENCE,2022,10.
APA Dai, Zhangjun,Huang, Kang,Jiang, Lingfa,Li, Jian,Yu, Fei,&Chen, Shanxiong.(2022).Shear Strength Characteristics of Clay-Gravel Layer and Its Slope Failure Law and Mechanism.FRONTIERS IN EARTH SCIENCE,10.
MLA Dai, Zhangjun,et al."Shear Strength Characteristics of Clay-Gravel Layer and Its Slope Failure Law and Mechanism".FRONTIERS IN EARTH SCIENCE 10(2022).

入库方式: OAI收割

来源:武汉岩土力学研究所

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