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Investigating the deformation and failure characteristics of argillite consequent slope using discrete element method and Burgers model
by
Lo, Chia-Ming
, Lin, Sih-Siao
, Lin, Yi-Ching
in
Adhesion
/ argillite
/ Biogeosciences
/ Bond strength
/ Bonding
/ Coefficient of friction
/ Creep (materials)
/ Deformation
/ Deformation effects
/ Discrete element method
/ Earth and Environmental Science
/ Earth Sciences
/ Environmental Science and Engineering
/ Friction
/ Geochemistry
/ Geology
/ Hydrology/Water Resources
/ Interlayers
/ Mathematical models
/ monitoring
/ Numerical models
/ Original Article
/ Sliding
/ Slope
/ Slumping
/ Stiffness
/ Terrestrial Pollution
2017
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Investigating the deformation and failure characteristics of argillite consequent slope using discrete element method and Burgers model
by
Lo, Chia-Ming
, Lin, Sih-Siao
, Lin, Yi-Ching
in
Adhesion
/ argillite
/ Biogeosciences
/ Bond strength
/ Bonding
/ Coefficient of friction
/ Creep (materials)
/ Deformation
/ Deformation effects
/ Discrete element method
/ Earth and Environmental Science
/ Earth Sciences
/ Environmental Science and Engineering
/ Friction
/ Geochemistry
/ Geology
/ Hydrology/Water Resources
/ Interlayers
/ Mathematical models
/ monitoring
/ Numerical models
/ Original Article
/ Sliding
/ Slope
/ Slumping
/ Stiffness
/ Terrestrial Pollution
2017
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Investigating the deformation and failure characteristics of argillite consequent slope using discrete element method and Burgers model
by
Lo, Chia-Ming
, Lin, Sih-Siao
, Lin, Yi-Ching
in
Adhesion
/ argillite
/ Biogeosciences
/ Bond strength
/ Bonding
/ Coefficient of friction
/ Creep (materials)
/ Deformation
/ Deformation effects
/ Discrete element method
/ Earth and Environmental Science
/ Earth Sciences
/ Environmental Science and Engineering
/ Friction
/ Geochemistry
/ Geology
/ Hydrology/Water Resources
/ Interlayers
/ Mathematical models
/ monitoring
/ Numerical models
/ Original Article
/ Sliding
/ Slope
/ Slumping
/ Stiffness
/ Terrestrial Pollution
2017
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Investigating the deformation and failure characteristics of argillite consequent slope using discrete element method and Burgers model
Journal Article
Investigating the deformation and failure characteristics of argillite consequent slope using discrete element method and Burgers model
2017
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Overview
This paper reports on the use of discrete element method to investigate the deformation and failure characteristics of an argillite consequent slope presenting signs of creeping and deformation. The proposed numerical model (based on Burgers model) takes into account the friction coefficient, bonding stiffness, and strength of the constituent materials, as well as the stiffness and strength of interlayer bonds. Weak plane bonding was identified as the key factor determining the sliding and deformation of slopes, with a far greater effect than the friction coefficient, bonding stiffness, or strength of interlayer weak planes. Nonetheless, continued monitoring and comparative analysis of all of these parameters may still be necessary to produce reasonable simulations of slope sliding behavior.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
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