NASA NTRS · 19790029104
Eddy diffusivities within Jupiter
Abstract
The Flasar and Gierasch (1977) model for small-scale thermally driven turbulent convection in rapidly rotating systems is used to estimate eddy diffusivities within Jupiter's atmosphere and interior. It is assumed that heat transport is governed by a mixing-length law, that Jupiter's interior heat flow derives from thermal cooling, and that the entropy loss per nucleon is uniform throughout. A characteristic scalar diffusivity is obtained as a function of pressure level and latitude. The results show that the latitude variation in the diffusivity might be as large as a factor of 100 at 4600 bars. The consequences of such variations are considered.
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Flasar, F. M., Gierasch, P. J.. 1978-01-01. Eddy diffusivities within Jupiter. https://ntrs.nasa.gov/citations/19790029104
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