Pages that link to "Item:Q419698"
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The following pages link to A coupled VOF-IBM-enthalpy approach for modeling motion and growth of equiaxed dendrites in a solidifying melt (Q419698):
Displaying 11 items.
- Phase field study of the tip operating state of a freely growing dendrite against convection using a novel parallel multigrid approach (Q348450) (← links)
- An enthalpy method for modeling eutectic solidification (Q348854) (← links)
- In situ study on dendrite growth of metallic alloy by a synchrotron radiation imaging technology (Q617148) (← links)
- A volume-of-fluid method with interface reconstruction for ice growth in supercooled water (Q728859) (← links)
- A lattice Boltzmann study of the effect of stirring on the migration rate of a curved interface in binary slurries (Q1043140) (← links)
- A sharp-interface model coupling VOSET and IBM for simulations on melting and solidification (Q1626367) (← links)
- A sharp computational method for the simulation of the solidification of binary alloys (Q2353352) (← links)
- A phase-field-lattice Boltzmann method for modeling motion and growth of a dendrite for binary alloy solidification in the presence of melt convection (Q2374640) (← links)
- Phase-field simulations of crystal growth in a two-dimensional cavity flow (Q2414433) (← links)
- Comparative assessment of volume-of-fluid and level-set methods by relevance to dendritic ice growth in supercooled water (Q2446557) (← links)
- Three-dimensional sharp and conservative VOF method for the simulation of binary solidification (Q6095129) (← links)