World Journal of Mechanics

World Journal of Mechanics

ISSN Print: 2160-049X
ISSN Online: 2160-0503
www.scirp.org/journal/wjm
E-mail: wjm@scirp.org
"Numerical Simulation of Two-Dimensional Dendritic Growth Using Phase-Field Model"
written by Abdullah Shah, Ali Haider, Said Karim Shah,
published by World Journal of Mechanics, Vol.4 No.5, 2014
has been cited by the following article(s):
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[8] Efficient and Energy Stable Scheme for an Anisotropic Phase-field Dendritic Crystal Growth Model Using the Scalar Auxiliary Variable (SAV) Approach
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[9] Energy and entropy preserving numerical approximations of thermodynamically consistent crystal growth models
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[10] A novel decoupled and stable scheme for an anisotropic phase-field dendritic crystal growth model
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[12] A Smoothed Particle-Phase Field Method with Radial Basis Functions and Moving Least Squares for Meshfree Simulation of Dendritic Solidification
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[13] A Smoothed Particle Hydrodynamics-Phase Field Method with Radial Basis Functions and Moving Least Squares for Meshfree Simulation of Dendritic Solidification
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[14] Morphological diversity of AlN nano-and microstructures: synthesis, growth orientations and theoretical modelling
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[15] 六角冰晶生长过程的相场模拟
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[16] Efficient linear, Stabilized, second-order time marching schemes for an anisotropic phase field dendritic crystal growth model
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[17] Numerical approximations for a phase field dendritic crystal growth model based on the invariant energy quadratization approach
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[18] An efficient time-stepping scheme for numerical simulation of dendritic crystal growth
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[19] A study on coupled martensitic phase transformation and crack propagation: a phase-field approach
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