Progressive failure behavior of cohesive soil slopes under water drawdown conditions

被引:28
作者
Luo, Fangyue [1 ]
Zhang, Ga [1 ]
机构
[1] Tsinghua Univ, State Key Lab Hydrosci & Engn, Beijing 100084, Peoples R China
基金
中国国家自然科学基金;
关键词
Slope; Progressive failure; Drawdown; Centrifuge model test; Deformation; TRANSIENT UNSATURATED SEEPAGE; CENTRIFUGE MODEL TESTS; STABILITY ANALYSIS; MECHANISM; LANDSLIDE; RESERVOIR; SYSTEM;
D O I
10.1007/s12665-016-5802-3
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As the number of large reservoirs has grown rapidly, drawdown of water level has become a major factor in inducing landslides. A new simulator was developed to simulate the in-flight drawdown in a centrifuge model test. A series of centrifuge model tests was conducted on slopes with different gradients under drawdown conditions. The failure mechanism was obtained via an integrated analysis of deformation and failure processes according to the displacement histories of the slopes measured by the image capture and displacement measurement system. The slip surface, with slippage failure, was developed from the top downwards due to the drawdown. The displacement histories of the sliding body could be divided into three stages with the increase rate changing from small to large and finally becoming negligible. The deformation of the slope only appeared within a limited zone with a nearly invariable boundary surface during the drawdown. The boundary surface moved closer to the slope surface with the deceasing slope gradient. The drawdown caused a significant coupling process of local failure and deformation localization, which developed from the upper part to the lower part. The upper part of the sliding body behaved as a rigid body, and the lower parts exhibited significant deformation after the slip surface formed, which should be reasonably captured in a stability analysis of a slope under drawdown conditions.
引用
收藏
页数:12
相关论文
共 50 条
[11]   Centrifuge model test study on pile reinforcement behavior of cohesive soil slopes under earthquake conditions [J].
Liping P. Wang ;
Ga Zhang .
Landslides, 2014, 11 :213-223
[12]   Failure behavior and mechanism of slopes reinforced using soil nail wall under various loading conditions [J].
Zhang, Ga ;
Cao, Jie ;
Wang, Liping .
SOILS AND FOUNDATIONS, 2014, 54 (06) :1175-1187
[13]   Progressive failure behavior of pile-reinforced clay slopes under surface load conditions [J].
Li Ping Wang ;
Ga Zhang .
Environmental Earth Sciences, 2014, 71 :5007-5016
[14]   Centrifuge Modeling of Plant Root Reinforcement on Slopes Under Drawdown Conditions [J].
Chen Siyu ;
Zhang Ga .
ENGINEERING GEOLOGY FOR A HABITABLE EARTH, VOL 4, IAEG XIV CONGRESS 2023, 2024, :861-874
[15]   Centrifuge modeling of soil slopes overlying bedrock under excavation conditions [J].
Zhao, Yiying ;
Zhang, Ga .
SOILS AND FOUNDATIONS, 2020, 60 (04) :886-897
[16]   Progressive failure of expansive soil slopes under rainfall [J].
Zhang L.-Y. ;
Chen T.-L. ;
Zhang D.-L. .
Yantu Gongcheng Xuebao/Chinese Journal of Geotechnical Engineering, 2019, 41 (01) :70-77
[17]   Centrifuge Model Test Study on Failure Behavior of Soil Slopes Overlying the Bedrock [J].
Zhao, Yiying ;
Zhang, Ga ;
Hu, Daisong ;
Han, Yuzhen .
INTERNATIONAL JOURNAL OF GEOMECHANICS, 2018, 18 (11)
[18]   Simplified stability analysis of strain-softening slopes under drawdown conditions [J].
Ga Zhang ;
Fangyue Luo .
Environmental Earth Sciences, 2017, 76
[19]   A siphon drainage method for stabilizing bank slopes under water drawdown condition [J].
Yu, Yang ;
Lv, Chengcheng ;
Wang, Dongfei ;
Ge, Qi ;
Sun, Hongyue ;
Shang, Yuequan .
NATURAL HAZARDS, 2021, 105 (02) :2263-2282
[20]   Mechanism of the progressive failure of non-cohesive natural dam slopes [J].
Jiang, Xiangang ;
Worman, Anders ;
Chen, Pengshuai ;
Huang, Qin ;
Chen, Huayong .
GEOMORPHOLOGY, 2020, 363