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Convection in the Physical Vapor Transport ProcessWe consider the effect of an inert gas on the diffusive-convective physical vapor transport process. We investigate the case when the temperature gradient is stabilizing and the concentration gradient is destabilizing for a wide parametric range. When an inert gas is present, the thermal and solutal convection oppose each other. The solutal field is destabilizing while the thermal field and the advective-diffusive flux stabilize the flow field. When the pressure of the inert component is increased, the stabilizing effect of the advective-diffusive flux is decreased. The intensity of convection as well as the oscillatory transient time increases. Below, the critical Rayleigh number, the nonlinear dynamics of the flow field show an oscillatory approach to steady state. For parametric values in the neighborhood of the critical Rayleigh number, the flow field undergoes a chaotic transient which settles to a periodic state. The asymptotic state of the flow field shows that growth and amalgamation of cells yields an overturning motion which results in an asymmetric cellular structure. The low gravity environment yields the stabilizing advective-diffusive flow which results in uniform temperature and concentration gradients near the crystal interface.
Document ID
19970012658
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Duval, Walter M. B.
(NASA Lewis Research Center Cleveland, OH United States)
Date Acquired
August 17, 2013
Publication Date
April 1, 1994
Publication Information
Publication: Chemical Vapor Deposition
Publisher: Technomic Publishng Co., Inc.
Volume: 2
ISSN: 1056-7860
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
NAS 1.15:111848
NASA-TM-111848
Accession Number
97N70992
Distribution Limits
Public
Copyright
Public Use Permitted.
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