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Diffusion Creep of Enstatite at High Pressures Under Hydrous Conditions
Guinan Zhang
, Shenghua Mei
, Maoshuang Song
, David L. Kohlstedt
Earth and Environmental Sciences-Twin Cities
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
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Keyphrases
Hydrous
100%
High Pressure
100%
Enstatite
100%
Diffusion Creep
100%
Olivine
60%
Water Fugacity
60%
Viscosity
40%
Orthopyroxene
40%
Flow Law
40%
Upper Mantle
20%
Lithosphere-asthenosphere Boundary
20%
High Temperature
20%
Rheology
20%
Deformation-DIA
20%
Flow Behavior
20%
Water Temperature
20%
Water Distribution
20%
Strong Dependence
20%
Activation Energy
20%
Mantle Convection
20%
Rheological Properties
20%
Geological Setting
20%
Activation Volume
20%
Plate Motions
20%
Deformation Behavior
20%
Deformation Experiments
20%
Differential Stress
20%
Creep Rate
20%
Regression Fit
20%
Water Pressure
20%
Least Squares Regression
20%
Viscosity Structure
20%
Deformation Rate
20%
Water-weakening Effect
20%
Upper Mantle Deformation
20%
Triaxial Compressive
20%
Compressive Creep Behavior
20%
Earth Upper Mantle
20%
Earth and Planetary Sciences
Enstatite
100%
Upper Mantle
60%
Fugacity
60%
Orthopyroxene
40%
Rheology
40%
Lithosphere
20%
Asthenosphere
20%
Mantle Convection
20%
Water Stress
20%
Plate Motion
20%
Water Distribution
20%