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DEM modelling of a double-porosity crushable granular material
M. O. Ciantia
, Marcos Arroyo
, J. Butlanska
, A. Gens
Civil Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
10
Citations (Scopus)
Overview
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Dive into the research topics of 'DEM modelling of a double-porosity crushable granular material'. Together they form a unique fingerprint.
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Keyphrases
Discrete Element Modeling
100%
Crushable Granular Materials
100%
Internal Porosity
100%
Double Porosity
100%
Numerical Simulation
33%
Under Loading
33%
Material Characteristics
33%
Mechanical Behavior
33%
Particle number
33%
Porosity
33%
In(III)
33%
Granular Materials
33%
High Pressure
33%
Failure Criterion
33%
Particle Strength
33%
Uniaxial Compression
33%
Discrete Element Method
33%
Triaxial Compression Test
33%
Agglomerates
33%
Grain Crushing
33%
Contact Model
33%
Good Fit
33%
Crushable Soil
33%
Pumice Sand
33%
Particle Failure
33%
Macroscopic Observation
33%
Strength Size Effect
33%
Porous Geomaterial
33%
One-dimensional Compression Test
33%
One-dimensional Compression
33%
Low Confinement
33%
Particle Dimensions
33%
Engineering
Discrete Element
100%
Element Method
100%
Porosity
100%
One Dimensional
25%
Compression Tests
25%
Material Characteristic
12%
Test Result
12%
Model Parameter
12%
Failure Criterion
12%
Size Effect
12%
Contact Model
12%
Material Science
Discrete Element Method
100%
Granular Material
100%
Natural Material
50%