Astronomy and Astrophysics – Astronomy
Scientific paper
Jun 1981
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1981jats...38.1220l&link_type=abstract
Journal of the Atmospheric Sciences, vol. 38, June 1981, p. 1220-1235. Research supported by the U.S. National Research Council
Astronomy and Astrophysics
Astronomy
45
Atmospheric Circulation, Cloud Physics, Jet Streams (Meteorology), Spacecraft Television, Venus Atmosphere, Venus Clouds, Angular Momentum, Atmospheric Turbulence, Barotropic Flow, Mariner 10 Space Probe, Satellite Observation, Spatial Distribution, Ultraviolet Astronomy, Vortices, Venus, Motion, Clouds, Structure, Atmosphere, Mariner 10, Flow, Waves, Analysis, Circulation, Zones, Jet Streams, Latitude, Data, Longitude, Ultraviolet, Wavelengths, Imagery, Photographs, Procedure, Techniques, Features, Velocit
Scientific paper
Results on cloud motions on Venus obtained over a period of 3.5 days from Mariner 10 television images are presented. The implied atmosphere flow is almost zonal everywhere on the visible disk, and is in the same retrograde sense as the solid planet. Objective analysis of motions suggests the presence of jet cores (-130 m/s) and organized atmospheric waves. The longitudinal mean meridional profile of the zonal component of motion of the ultraviolet features shows presence of a midlatitude jet stream (-110 m/s). The mean zonal component is -97 m/s at the equator. The mean meridional motion at most latitudes is directed toward the pole in either hemisphere and is at least an order of magnitude smaller so that the flow is nearly zonal. A tentative conclusion from the limited coverage available from Mariner 10 is that at the level of ultraviolet features mean meridional circulation is the dominant mode of poleward angular momentum transfer as opposed to the eddy circulation.
Limaye Sanjay S.
Suomi Verner E.
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