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Thermosolutal convection during directional solidificationDuring solidification of a binary alloy at constant velocity vertically upward, thermosolutal convection can occur if the solute rejected at the crystal-melt interface decreases the density of the melt. We assume that the crystal-melt interface remains planar and that the flow field is periodic in the horizontal direction. The time-dependent nonlinear differential equations for fluid flow, concentration, and temperature are solved numerically in two spatial dimensions for small Prandtl numbers and moderately large Schmidt numbers. For slow solidification velocities, the thermal field has an important stabilizing influence: near the onset of instability the flow is confined to the vicinity of the crystal-melt interface. Further, for slow velocities, as the concentration increases, the horizontal wavelength of the flow decreases rapidly - a phenomenon also indicated by linear stability analysis. The lateral inhomogeneity in solute concentration due to convection is obtained from the calculations. For a narrow range of solutal Rayleigh numbers and wavelengths, the flow is periodic in time.
Document ID
19850035927
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Mcfadden, G. B.
(National Bureau of Standards Washington, DC, United States)
Rehm, R. G.
(National Bureau of Standards Washington, DC, United States)
Coriell, S. R.
(National Bureau of Standards Washington, DC, United States)
Chuck, W.
(National Bureau of Standards Washington, DC, United States)
Morrish, K. A.
(National Bureau of Standards Washington, DC, United States)
Date Acquired
August 12, 2013
Publication Date
December 1, 1984
Publication Information
Publication: Metallurgical Transactions A - Physical Metallurgy and Materials Science
Volume: 15A
ISSN: 0360-2133
Subject Category
Solid-State Physics
Accession Number
85A18078
Distribution Limits
Public
Copyright
Other

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