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Geoid and topography for infinite Prandtl number convection in a spherical shellGeoid anomalies and surface and lower-boundary topographies are calculated for numerically generated thermal convection for an infinite Prandtl number, Boussinesq, axisymmetric spherical fluid shell with constant gravity and viscosity, for heating both entirely from below and entirely from within. Convection solutions are obtained for Rayleigh numbers Ra up to 20 times the critical Ra in heating from below and 27 times critical for heating from within. Geoid parallels surface undulations, and boundary deformation generally increases with increasing cell wavelength. Dimensionless geoid and topography in heating from below are about 5 times greater than in heating from within. Values for heating from within correlate more closely with geophysical data than values from heating from below, suggesting a predominance of internal heating in the mantle. The study emphasizes that dynamically induced topography and geoid are sensitive to the mode of heating in the earth's mantle.
Document ID
19880054605
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Bercovici, D.
(California Univ. Los Angeles, CA, United States)
Schubert, G.
(California, University Los Angeles, United States)
Zebib, A.
(Rutgers University New Brunswick, NJ, United States)
Date Acquired
August 13, 2013
Publication Date
June 10, 1988
Publication Information
Publication: Journal of Geophysical Research
Volume: 93
ISSN: 0148-0227
Subject Category
Geophysics
Accession Number
88A41832
Funding Number(s)
CONTRACT_GRANT: NAG5-152
CONTRACT_GRANT: NSG-7315
Distribution Limits
Public
Copyright
Other

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