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A dynamic model of Venus's gravity fieldUnlike Earth, long wavelength gravity anomalies and topography correlate well on Venus. Venus's admittance curve from spherical harmonic degree 2 to 18 is inconsistent with either Airy or Pratt isostasy, but is consistent with dynamic support from mantle convection. A model using whole mantle flow and a high viscosity near surface layer overlying a constant viscosity mantle reproduces this admittance curve. On Earth, the effective viscosity deduced from geoid modeling increases by a factor of 300 from the asthenosphere to the lower mantle. These viscosity estimates may be biased by the neglect of lateral variations in mantle viscosity associated with hot plumes and cold subducted slabs. The different effective viscosity profiles for Earth and Venus may reflect their convective styles, with tectonism and mantle heat transport dominated by hot plumes on Venus and by subducted slabs on Earth. Convection at degree 2 appears much stronger on Earth than on Venus. A degree 2 convective structure may be unstable on Venus, but may have been stabilized on Earth by the insulating effects of the Pangean supercontinental assemblage.
Document ID
19860038147
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Kiefer, W. S.
(California Inst. of Tech. Pasadena, CA, United States)
Richards, M. A.
(California Inst. of Tech. Pasadena, CA, United States)
Hager, B. H.
(California Institute of Technology Pasadena, United States)
Bills, B. G.
(Lunar and Planetary Institute Houston, TX, United States)
Date Acquired
August 12, 2013
Publication Date
January 1, 1986
Publication Information
Publication: Geophysical Research Letters
Volume: 13
ISSN: 0094-8276
Subject Category
Lunar And Planetary Exploration
Accession Number
86A22885
Funding Number(s)
CONTRACT_GRANT: NASW-3389
CONTRACT_GRANT: NAG5-315
Distribution Limits
Public
Copyright
Other

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