三峡库区某滑坡滑带土剪切变形特性及控滑机理
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水利部公益行业科研专项(201401029);国家自然科学基金(41372163、41172145)


Shear Deformation Properties of Sliding Zone Soil and Its Effect on Sliding Mechanism of a Landslide in the Three Gorges Reservoir Area
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    摘要:

    滑带土的力学特性对滑坡的稳定性具有控制作用,为了研究其控制机理,对三峡库区秭归县某滑坡滑带土取样,通过进行多组固结快剪和固结排水反复剪等直接剪切试验,研究了其应变硬化的特性,揭示了应变硬化型滑带土在滑坡变形过程中的作用机理。研究结果表明,该滑带土从塑性变形到剪切破坏过程中,所需的剪应力不断增大。经过反复剪切之后,其抗剪强度有所增加,内摩擦角对其抗剪强度的影响占主导作用,且正应力越大增加得越明显。通过滑坡实地勘测及数值模拟计算,研究了应变硬化型滑带土对滑坡稳定性的影响。分析认为,在滑坡滑动过程中,由于应变硬化型滑带土经剪切之后摩擦强度增大,消耗了滑坡的动能,对滑坡的作用在宏观上表现为,滑坡经短距离滑动之后出现暂时稳定状态。

    Abstract:

    The mechanical properties of slip soil play a key role in landslide stability. In order to study this control mechanism, multigroup experiments on the slip soil of a landslide were conducted in the Three Gorges reservoir in Zigui county involving consolidated quick direct shear test and consolidated drained direct shear test, through which the strain hardening property of this slip soil has been studiedas well as mechanism of landslide deformation resulting from the strain hardening slip soil. The results show that from plastic deformation to shear failure, the shear stress applied to this slip soil increases all the way. After repeated shearing, its shear strength increases, and the greater the normal stress, the more the shear strength increases, in which process the angle of internal friction contributes the most to its shear strength variation. Through the field investigation and numerical modeling, how the strain hardening slip soil affects the landslide stability was studied. In the process of sliding, the frictional strength of the strain hardening slip soil increases after being shearing, leading to the consumption of the landslide’s kinetic energy, following the phenomenon that a temporary steady state occurs after a short distance sliding.

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易庆林,赵能浩,孟召平,胡大儒,关倪.三峡库区某滑坡滑带土剪切变形特性及控滑机理[J].土木与环境工程学报(中英文),2014,36(5):125-130. Yi Qinglin, Zhao Nenghao, Meng Zhaoping, Hu Daru, Guan Ni. Shear Deformation Properties of Sliding Zone Soil and Its Effect on Sliding Mechanism of a Landslide in the Three Gorges Reservoir Area[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2014,36(5):125-130.10.11835/j. issn.1674-4764.2014.05.020

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  • 收稿日期:2014-03-11
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  • 在线发布日期: 2014-11-07
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