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首页> 外文期刊>Engineering Geology >Creep properties of clastic soil in a reactivated slow-moving landslide in the Three Gorges Reservoir Region, China
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Creep properties of clastic soil in a reactivated slow-moving landslide in the Three Gorges Reservoir Region, China

机译:中国三峡库区重新激活慢速滑坡中碎屑土的蠕变性质

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摘要

Most slow-moving landslides in the Three Gorges Reservoir (TGR) region of China are characterized by preexisting shear surfaces. The large deformation within the shear zones usually gives rise to clastic soil formation. The creep properties have large influence on the kinematic feature of landslides. In this paper, we report an insitu direct shear creep test carried out in the shear zone of a reactivated slow-moving landslide in the TGR region. Correspondingly, some laboratory ring shear creep tests are carried out to interpret the movement pattern of this landslide. The shear zone soil exhibits similar non-attenuating creep responses in both the in-situ direct shear and laboratory ring shear creep tests. At the same stress level, however, the in-situ direct shear creep test yields a larger rate of creep displacement due to shearing along the landslide direction. In the ring shear creep tests, at the prepeak stage, the critical creep stress that triggers creep failure is slightly lower than the peak shear strength but much larger than the residual strength; at the postfailure stage, the critical creep stress of the shear-zone soil is equal to the residual shear strength. The rate-dependent residual shear strength may account for the stepwise movement pattern of the landslide.
机译:中国三峡库区(TGR)地区的大多数慢速移动的滑坡都是预先存在的剪切表面。剪切区内的大变形通常会产生碎片土壤形成。蠕变性质对山体滑坡的运动学特征有很大影响。在本文中,我们报告了在TGR区域的重新激活的慢速滑坡的剪切区中进行的Insitu直接剪切蠕变试验。相应地,进行一些实验室环剪切蠕变测试以解释这种滑坡的运动模式。剪切区土壤在原位直接剪切和实验室剪切蠕变试验中表现出类似的非衰减蠕变反应。然而,在相同的应力水平处,原位直接剪切蠕变试验产生由于沿滑坡方向的剪切引起的较大蠕变位移速率。在环形剪切蠕变试验中,在Prepeak阶段,触发蠕变失效的临界蠕变应力略低于峰值剪切强度,但远远大于残余强度;在岗位阶段,剪切区土壤的临界蠕变应力等于残留剪切强度。依赖于速率的残留剪切强度可以占滑坡的逐步运动模式。

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