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Strategies for the coupling of global and local crystal growth models
Jeffrey J. Derby
, Lisa Lun
, Andrew Yeckel
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Scopus citations
Overview
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Keyphrases
Crystal Growth Simulation
100%
Fluid Dynamics
50%
Heat Transfer
50%
Crystal Growth
50%
Bridgman Crystal Growth
50%
Dynamic Change
50%
Global Model
50%
Phase Change Phenomena
50%
Fluid Phase
50%
Modular Coupling
50%
Growing System
50%
One-dimensional Problem
50%
Block Gauss-Seidel
50%
Gauss-Seidel Iteration
50%
Coupled Models
50%
Numerical Code
50%
Over-relaxation
50%
Newton Iteration Method
50%
Coupling Performance
50%
Engineering
One Dimensional
100%
Growth Process
100%
Limitations
100%
Dimensional Problem
100%
Sample Result
100%
Coupled Model
100%
under-Relaxation
100%
Fluid Dynamics
100%
Gauss
100%
Mathematics
Seidel Iteration
100%
Newton Iteration
100%
Iteration Method
100%
Numerical Code
100%
Dimensional Problem
100%
Sample Result
100%
Earth and Planetary Sciences
Crystal Growth
100%
Fluid Dynamics
33%
Melt (Crystal Growth)
33%
Material Science
Crystal Growth
100%
Fluid Dynamics
25%