Progressive evolution and failure behavior of a Holocene river-damming landslide in the SE Tibetan Plateau, China

被引:0
|
作者
Yanyan Li
Xuyang Feng
Aijun Yao
Zhihong Zhang
Kun Li
Qiusheng Wang
Shengyuan Song
机构
[1] Beijing University of Technology,Faculty of Urban Construction
[2] General Institute of Water Resources and Hydropower Planning and Design,College of Construction Engineering
[3] Ministry of Water Resources,undefined
[4] Jilin University,undefined
来源
Landslides | 2022年 / 19卷
关键词
Tibetan Plateau; Buckling; Landslide evolution; Distinct element method; Creep; Voronoi;
D O I
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中图分类号
学科分类号
摘要
This paper presents a study on an ancient river-damming landslide in the SE Tibet Plateau, China, with a focus on time-dependent gravitational creep leading to slope failure associated with progressive fragmentation during motion. Field investigation shows that the landslide, with an estimated volume of 4.9 × 107 m3, is a translational toe buckling slide. Outcrops of landslide deposits, buckling, toe shear, residual landslide dam, and lacustrine sediments are distributed at the slope base. The landslide deposits formed a landslide dam over 60 m high and at one time blocked the Jinsha River. Optically stimulated luminescence dating for the lacustrine sediments indicates that the landslide occurred at least 2,600 years ago. To investigate the progressive evolution and failure behavior of the landslide, numerical simulations using the distinct element method are conducted. The results show that the evolution of the landslide could be divided into three stages: a time-dependent gravitational creep process, rapid failure, and granular flow deposition. It probably began as a long-term gravitationally induced buckling of amphibolite rock slabs along a weak interlayer composed of mica schist which was followed by progressive fragmentation during flow-like motion, evolving into a flow-like movement, which deposited sediments in the river valley. According to numerical modeling results, the rapid failure stage lasted 35 s from the onset of sudden failure to final deposition, with an estimated maximum movement rate of 26.8 m/s. The simulated topography is close to the post-landslide topography. Based on field investigation and numerical simulation, it can be found that the mica schist interlayer and bedding planes are responsible for the slope instability, while strong toe erosion caused by the Jinsha River caused the layered rock mass to buckle intensively. Rainfall or an earthquake cannot be ruled out as a potential trigger of the landslide, considering the climate condition and the seismic activity on centennial to millennial timescales in the study area.
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页码:1069 / 1086
页数:17
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    [J]. Zhao, Siyuan (zhaosiyuan@scu.edu.cn), 1600, Sichuan University (52): : 50 - 61
  • [22] A large landslide on the upper reach of the Jinsha River, SE Tibetan Plateau: characteristics, influencing factors, and mechanism
    Chen, Zhuo
    Song, Danqing
    [J]. NATURAL HAZARDS, 2024, 120 (01) : 153 - 179
  • [23] A large landslide on the upper reach of the Jinsha River, SE Tibetan Plateau: characteristics, influencing factors, and mechanism
    Zhuo Chen
    Danqing Song
    [J]. Natural Hazards, 2024, 120 : 153 - 179
  • [24] Luminescence dating of Suozi landslide in the Upper Yellow River of the Qinghai-Tibetan Plateau, China
    Guo, Xiaohua
    Lai, Zhongping
    Sun, Zheng
    Li, Xiaolin
    Yang, Taibao
    [J]. QUATERNARY INTERNATIONAL, 2014, 349 : 159 - 166
  • [25] Evolution of a landslide-dammed lake on the southeastern Tibetan Plateau and its influence on river longitudinal profiles
    Wang, Hao
    Cui, Peng
    Liu, Dingzhu
    Liu, Weiming
    Bazai, Nazir Ahmed
    Wang, Jiao
    Zhang, Guotao
    Lei, Yu
    [J]. GEOMORPHOLOGY, 2019, 343 : 15 - 32
  • [26] Landslide Susceptibility Mapping along a Rapidly Uplifting River Valley of the Upper Jinsha River, Southeastern Tibetan Plateau, China
    Sun, Xiaohui
    Chen, Jianping
    Li, Yanrong
    Rene, Ngambua N.
    [J]. REMOTE SENSING, 2022, 14 (07)
  • [27] Quaternary drainage evolution of the Datong River, Qilian Mountains, northeastern Tibetan Plateau, China
    Ma, Zhenhua
    Feng, Zhantao
    Peng, Tingjiang
    Liu, Shanpin
    Li, Meng
    Guo, Benhong
    Li, Xiaomiao
    Song, Chunhui
    Zhao, Zhijun
    Li, Jijun
    [J]. GEOMORPHOLOGY, 2020, 353
  • [28] Evolution process of the Yinduba paleolandslide-dammed lake in the upper Jinsha River, SE Tibetan Plateau
    Xu, Hui
    Chen, Jian
    Chen, Ruichen
    Cui, Zhijiu
    Mi, Dongdong
    Shi, Lulu
    [J]. FRONTIERS IN EARTH SCIENCE, 2023, 11
  • [29] The Creep-Sliding Deformation Mechanism of the Jiaju Ancient Landslide in the Upstream of Dadu River, Tibetan Plateau, China
    Yan, Yiqiu
    Guo, Changbao
    Li, Caihong
    Yuan, Hao
    Qiu, Zhendong
    [J]. REMOTE SENSING, 2023, 15 (03)
  • [30] Meso/micro-texture analysis of the landslide-dam outburst sediments in the Upper Jinsha River, SE Tibetan Plateau
    Chen, Jian
    Cui, Zhijiu
    Liu, Chao
    Zhou, Wendy
    Chen, Ruichen
    [J]. GEOLOGIA CROATICA, 2019, 72 : 81 - 91