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3D adaptive mesh refinement simulations of pellet injection in tokamaks
R. Samtaney
, S. C. Jardin
, P. Colella
, D. F. Martin
PPPL Theory
Research output
:
Contribution to journal
›
Conference article
›
peer-review
20
Scopus citations
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Dive into the research topics of '3D adaptive mesh refinement simulations of pellet injection in tokamaks'. Together they form a unique fingerprint.
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Keyphrases
Tokamak
100%
Pellet Injection
100%
Adaptive Mesh Refinement
100%
Mathematical Model
25%
Computationally Efficient
25%
Magnetic Field
25%
Device Dimensions
25%
Solenoid
25%
Injection Process
25%
Numerical Methods
25%
Continuity Equation
25%
Source Term
25%
Projection Method
25%
Rate-based Model
25%
Refueling
25%
MHD Equations
25%
Mass Redistribution
25%
Ablation Rate
25%
Pellet Ablation
25%
Pellet Size
25%
Upwinding
25%
Engineering
Tokamak Device
100%
Adaptive Mesh Refinement
100%
Magnetic Field
25%
Magnetohydrodynamic Generator
25%
Single Fluid
25%
Injection Process
25%
Numerical Methods
25%
Continuity Equation
25%
Source Term
25%
Rate Model
25%
Ablation Rate
25%
Mathematical Model
25%
Physics
Tokamak Device
100%
Magnetohydrodynamic Generator
50%
Magnetic Field
50%
Mathematical Method
50%
Mathematical Model
50%
Continuity Equation
50%
Earth and Planetary Sciences
Tokamak Device
100%
Mathematical Method
50%
Continuity Equation
50%
Material Science
Magnetohydrodynamic Generator
100%