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The interface shape and macrostructure were investigated.
Temperature distribution in the furnace, S/L interface shape and melt flow are simulated.
The data are organized in four layers: structural, assembly interface, shape and statistic layers.
The interface shape can be influenced by forced convection using travelling magnetic fields.
Specific examination is made on thermal distribution, interface shape and velocity field.
No assumption is made on the interface shape (other than Lipschitz continuity).
By adsorbing to a curved interface, a particle eliminates a patch of fluid interface and perturbs the surrounding interface shape.
The temperature gradient distribution and the solid/liquid (S/L) interface shape evolution were investigated during directional solidification (DS).
In directional solidification of silicon, the solid-liquid interface shape plays a crucial role for the quality of crystals.
Sensitivity formula for arbitrary functional with respect to the interface shape variation is derived based on a boundary integral identity.
Moreover, the melt crystal interface shape in the dynamic case is the most favorable for growth of QSC silicon ingots.
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