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Applications of a Venus thermospheric circulation modelA variety of Pioneer Venus observations suggest a global scale, day-to-night Venus thermospheric circulation. Model studies of the dynamics and energetics of the Venus thermosphere are presented in order to address new driving, mixing and cooling mechanisms for an improved model simulation. The adopted approach was to reexamine the circulation by first using a previous two dimensional code to quantify those physical processes which can be inferred from the Pioneer Venus observations. Specifically, the model was used to perform sensitivity studies to determine the degree to which eddy cooling, eddy or wave drag, eddy diffusion and 15 micrometer radiational cooling are necessary to bring the model temperature and composition fields into agreement with observations. Three EUV heating cases were isolated for study. Global temperature and composition fields in good agreement with Pioneer data were obtained. Large scale horizontal winds 220 m/s were found to be consistent with the observed cold nightside temperatures and dayside bulges of O, CO and CO2. Observed dayside temperatures were obtained by using a 7 to 19% EUV heating efficiency profile. The enhanced 15 micrometer cooling needed for thermal balance is obtained using the best rate coefficient available for atomic O collisional excitation of CO2(0,1,0). Eddy conduction was not found to be a viable cooling mechanism due to the weakened global circulation. The strong 15 micrometer damping and low EUV efficiency imply a very weak dependence of the general circulation to solar cycle variability. The NCAR terrestrial thermospheric general circulation model was adapted for Venus inputs using the above two dimensional model parameters, to give a three dimensional benchmark for future Venus modelling work.
Document ID
19860019830
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Bougher, S. W.
(National Center for Atmospheric Research Boulder, CO, United States)
Dickinson, R. E.
(National Center for Atmospheric Research Boulder, CO, United States)
Ridley, E. C.
(National Center for Atmospheric Research Boulder, CO, United States)
Roble, R. G.
(National Center for Atmospheric Research Boulder, CO, United States)
Date Acquired
August 12, 2013
Publication Date
June 1, 1986
Publication Information
Publication: NASA. Goddard Space Flight Center Thermosphere Dynamics Workshop, Volume 2
Subject Category
Lunar And Planetary Exploration
Accession Number
86N29302
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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