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Discrete element modeling of tool-rock interaction II: Rock indentation
Haiying Huang,
Emmanuel Detournay
Civil, Environmental, and Geo- Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
84
Scopus citations
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Dive into the research topics of 'Discrete element modeling of tool-rock interaction II: Rock indentation'. Together they form a unique fingerprint.
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Mathematics
Discrete Element Method
100%
Discrete Elements
89%
Brittle Fracture
85%
Indentation
75%
Compressive Strength
48%
Failure Mechanism
44%
Interaction
39%
Toughness
39%
Modeling
35%
Far Field
32%
Cavity
30%
Wedge
29%
Propagation
25%
Prediction
22%
Numerical Results
18%
Simulation
17%
Model
9%
Earth & Environmental Sciences
brittle fracture
68%
discrete element method
65%
indentation
63%
damage
35%
failure mechanism
30%
rock
26%
compressive strength
26%
cavity
23%
relief
23%
modeling
23%
transition
17%
prediction
13%
simulation
12%
effect
6%
Engineering & Materials Science
Brittle fracture
62%
Indentation
59%
Finite difference method
56%
Rocks
47%
Defects
37%
Toughness
26%
Compressive strength
24%
Chemical Compounds
Brittle Fracture
81%
Length
32%
Compression Strength
29%
Surface
17%
Simulation
17%