HR: 1340h
AN: P33B-1298 [Abstracts]
TI: Improved Version of the Roldan et al's Non-Local Thermodynamic Equilibrium Model for the Infrared Emissions in the Atmosphere of Venus
AU: * Martin-Torres, F J
EM: Francisco.Martin-Torres-1@nasa.gov
AF: SD-CLIMATE SCIENCE BRANCH
AS&M, NASA/Langley Research Center
Mail Stop 936, Hampton, VA 23681-2199, United States
AU: Roldan, C
EM: cristina.roldan@vodafone.es
AU: Crisp, D
EM: David.Crisp@jpl.nasa.gov
AF: Jet Propulsion Laboratory, Jet Propulsion Laboratory
M/S 183-501
4800 Oak Grove Drive, Pasadena, CA 91109, United States
AB:
Roldan et al. (2000) described a state of the art non-local thermodynamic equilibrium model for the calculation of
the vibrational populations of CO2 and and the cooling and heating rates in the atmosphere of Venus. This
is currently the most comprehensive and sophisticated model up to date for the study of the CO2 infrared
emissions and the radiative equilibrium temperature in atmosphere of Venus. It allows the calculation of the
populations of 68 vibrational levels of the 4 major isotopes of CO2 and the cooling and heating rates of 100
transitions.
In spite of its unique capabilities this model has been abandoned several years. Here we present an update of
the code with an improved treatment of the physics of the problem (including more accurate radiative transfer and
line mixing calculations and aerosol treatment) and state-of-the-art line spectroscopic parameters. This new
model also includes the calculation of the near-infrared emissions from the O2 electronic states.
Two versions of the model (in Fortran 77 and Fortran 90) are now available. The modular structure of the Fortran
90 code allows for an easy adaptation to any General Circulation Model of the Venus atmosphere or planetary
mission retrieval processor.
In this paper we present the new capabilities and features of the model and their impacts in the calculations.
References:
Roldan, C., M. A. Lopez-Valverde, M. Lopez-Puertas, and D. P. Edwards, "Non-LTE Infrared Emissions of
CO2 in the Atmosphere of Venus", Icarus, vol. 147, Issue 1, pp. 11-25 (2000).
DE: 0340 Middle atmosphere: composition and chemistry
DE: 0343 Planetary atmospheres (5210, 5405, 5704)
DE: 0480 Remote sensing
DE: 3359 Radiative processes
DE: 6295 Venus
SC: Planetary Sciences [P]
MN: 2007 Fall Meeting