Full dynamic process simulation of landslides using a combination of limit analysis and Savage–Hutter model

被引:0
|
作者
Yu Luo
Siming He
Wei Liu
机构
[1] Chinese Academy of Sciences,Key Laboratory of Mountain Hazards and Surface Process
[2] Chinese Academy of Sciences,Institute of Mountain Hazards and Environment
[3] Center for Excellence in Tibetan Plateau Earth Sciences,undefined
[4] Chinese Academy of Sciences,undefined
来源
关键词
Landslide; Limit analysis; Savage–Hutter model; Dynamic process; Simulation;
D O I
暂无
中图分类号
学科分类号
摘要
This paper deals with the full dynamic process of landslides, including the landslide initiation process and the mass movement and accumulation process. This paper presents a new approach combination of the limit analysis and the depth-averaged Savage–Hutter model to simulate the full dynamic process of the landslides triggered by earthquakes. In this procedure, limit analysis is used to find the critical sliding surface. Subsequently, the depth-averaged Savage–Hutter model is used to simulate the mass movement and accumulation based on the critical sliding surface. This approach is illustrated by simulating the full dynamic process of a landslide triggered by earthquake. Simulation results indicate that the position of the sliding surface has a strong effect on the mass movement and accumulation. Finally, results from the simulation of the Daguangbao landslide and the real-world effects of the landslide are compared. The results indicate that the proposed approach is valid and reasonable to predict the full dynamic process of landslides.
引用
收藏
相关论文
共 50 条
  • [21] Model Adaptation for Dynamic Flotation Process Simulation
    Ohenoja, Markku
    Ruusunen, Mika
    Hultgren, Matias
    Remes, Antti
    2020 7TH INTERNATIONAL CONFERENCE ON CONTROL, DECISION AND INFORMATION TECHNOLOGIES (CODIT'20), VOL 1, 2020, : 183 - 188
  • [22] Dynamic model of a roast process for simulation and control
    Voglauer, B
    Jörgl, HP
    MATHEMATICAL AND COMPUTER MODELLING OF DYNAMICAL SYSTEMS, 2004, 10 (3-4) : 217 - 230
  • [23] Establishment and simulation in dynamic recovery process of tungsten using phase field model
    Li Z.-S.
    Tang S.
    Liang C.-P.
    Liu W.-S.
    Ma Y.-Z.
    Zhongguo Youse Jinshu Xuebao/Chinese Journal of Nonferrous Metals, 2021, 31 (07): : 1767 - 1773
  • [24] FIRE-SPREAD SIMULATION USING AN EXTENDED DYNAMIC PERCOLATION PROCESS MODEL
    HIRABAYASHI, F
    KASAHARA, Y
    NEC RESEARCH & DEVELOPMENT, 1988, (89): : 111 - &
  • [25] Analysis of green algal growth via dynamic model simulation and process optimization
    Zhang, Dongda
    Chanona, Ehecatl Antonio Del-Rio
    Vassiliadis, Vassilios S.
    Tamburic, Bojan
    BIOTECHNOLOGY AND BIOENGINEERING, 2015, 112 (10) : 2025 - 2039
  • [26] Integration of advanced process control and full-scale dynamic simulation
    Ye, N
    Valluri, S
    Barker, M
    Yu, PY
    ISA TRANSACTIONS, 2000, 39 (02) : 273 - 280
  • [27] Integration of advanced process control and full-scale dynamic simulation
    Ye, N
    Valluri, S
    Barker, M
    Yu, PY
    EMERGING TECHNOLOGIES IN MEASUREMENT AND CONTROL, 1999, 390 : 107 - 115
  • [28] Comparative dynamic analysis of the full Grossman model
    Ried, W
    JOURNAL OF HEALTH ECONOMICS, 1998, 17 (04) : 383 - 425
  • [29] Dynamic Simulation of a-IGZO TFT Circuits Using the Analytical Full Capacitance Model (AFCM)
    Hernandez-Barrios, Y.
    Gaspar-Angeles, J. N.
    Estrada, M.
    Iniguez, B.
    Cerdeira, A.
    IEEE JOURNAL OF THE ELECTRON DEVICES SOCIETY, 2021, 9 : 464 - 468
  • [30] Dynamic limit analysis formulation for impact simulation of structural members
    Kim, Kee Poong
    Huh, Hoon
    INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2006, 43 (21) : 6488 - 6501