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Convectively induced transition in mantle rheological behavior
Arie P. van den Berg
, David A. Yuen
Earth and Environmental Sciences-Twin Cities
Research output
:
Contribution to journal
›
Article
›
peer-review
3
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Scopus citations
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Keyphrases
Convection
100%
Rheological Behavior
100%
Induced Transition
100%
Convectively
100%
Thermal History
66%
Activation Energy
66%
Rayleigh number
66%
Creep Mechanism
66%
Numerical Modeling
33%
Perovskite
33%
Lower Mantle
33%
Energy Value
33%
Mantle Flow
33%
Mantle Convection
33%
Strain Rate
33%
Mantle Rheology
33%
Dislocation Creep
33%
Flow Law
33%
Diffusion Creep
33%
Early Earth
33%
Rheological Transition
33%
Nonlinear Creep
33%
Composite Rheology
33%
Linear Creep
33%
High Activation Energy
33%
Composite Flow
33%
Earth and Planetary Sciences
Rayleigh Number
100%
Creep
100%
Rheology
100%
Lower Mantle
50%
Numerical Modeling
50%
Perovskites
50%
Mantle Convection
50%
Early Earth
50%
nonNewtonian Flow
50%
Engineering
Rheological Behavior
100%
Activation Energy
100%
Rheology
66%
Thermal History
66%
Creep
66%
Rayleigh Number
66%
Numerical Modeling
33%
Dislocation Creep
33%
Diffusion Creep
33%
Calorific Value
33%
Physics
Activation Energy
100%
Creep
66%
Rayleigh Number
66%
Rheology
66%
Diffusion Creep
33%
Dislocation Creep
33%
Mantle Convection
33%
Early Earth
33%
nonNewtonian Flow
33%
Perovskites
33%