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Numerical and experimental study of solidification in a spherical shell
E. Assis,
G. Ziskind
,
R. Letan
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
133
Scopus citations
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Keyphrases
Phase Change Material
100%
Spherical Shell
100%
Numerical Simulation
20%
Liquid Phase
20%
Pattern Formation
20%
Commercially Available
20%
Paraffin Wax
20%
Numerical Model
20%
Void Growth
20%
Dimensional Analysis
20%
Irregular Boundary
20%
Uniform Temperature
20%
Melt Fraction
20%
Solidification Temperature
20%
Fourier number
20%
Stefan number
20%
Transient numerical Simulation
20%
Volumetric Shrinkage
20%
Shrinkage Void
20%
Shrinkage Pattern
20%
Engineering
Phase Change Material
100%
Computer Simulation
40%
Experimental Result
20%
Transients
20%
Liquid Phase
20%
Initial State
20%
Numerical Model
20%
Dimensional Analysis
20%
Void Growth
20%
Stefan Number
20%
Material Science
Solidification
100%
Phase Change Material
83%
Void Growth
16%