Publication | Closed Access
Energy stability of thermocapillary convection in a model of the float-zone crystal-growth process. II: Nonaxisymmetric disturbances
47
Citations
10
References
1991
Year
EngineeringPhysicsMixed ConvectionEnergy-stability TheoryApplied PhysicsThermocapillary ConvectionFloat-zone Crystal-growth ProcessThermophysicsEarlier Axisymmetric ModelThermodynamicsNatural ConvectionMultiphase FlowHeat TransferCrystal FormationThermal EngineeringConvective Heat TransferEnergy StabilityStability
Energy-stability theory has been applied to investigate the stability properties of thermocapillary convection in a half-zone model of the float-zone crystal-growth process. An earlier axisymmetric model has been extended to permit nonaxisymmetric disturbances, thus determining sufficient conditions for stability to disturbances of arbitrary amplitude. The results for nonaxisymmetric disturbances are compared with earlier axisymmetric results, with linear-stability results for a geometry with an infinitely long aspect ratio and with stability boundaries from recent laboratory experiments.
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