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Lessons Learned from Radiative Transfer Simulations of the Venus AtmosphereThe Venus atmosphere is extremely complex, and because of this the spectrum of Earths sister planet is likewise intricate and a challenge to model accurately. However, accurate modeling of Venus spectrum opens up multiple opportunities to better understand the planet next door, and even for understanding Venus-like planets beyond our solar system. Near-infrared (1-2.5 um, NIR) spectral windows observable on the Venus nigthside present the opportunity to probe beneath the Venusian cloud deck and measure thermal emission from the surface and lower atmosphere remotely from Earth or from orbit. These nigthside spectral windows were discovered by Allen and Crawford (1984) and have since been used measure trace gas abundances in the Venus lower atmosphere (less than 45 km), map surface emissivity varisions, and measure properties of the lower cloud deck. These windows sample radiation from below the cloud base at roughly 45 km, and pressures in this region range from roughly Earthlike (approx. 1 bar) up to 90 bars at the surface. Temperatures in this region are high: they range from about 400 K at the base of the cloud deck up to about 740 K at the surface. This high temperature and pressure presents several challenges to modelers attempting radiative transfer simulations of this region of the atmosphere, which we will review. Venus is also important to spectrally model to predict the remote observables of Venus-like exoplanets in anticipation of data from future observatories. Venus-like planets are likely one of the most common types of terrestrial planets and so simulations of them are valuable for planning observatory and detector properties of future telescopes being designed, as well as predicting the types of observations required to characterize them.
Document ID
20170006043
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Arney, G.
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Meadows, V. S.
(Washington Univ. Seattle, WA, United States)
Lincowski, A.
(Washington Univ. Seattle, WA, United States)
Date Acquired
July 3, 2017
Publication Date
May 9, 2017
Subject Category
Lunar And Planetary Science And Exploration
Computer Programming And Software
Report/Patent Number
GSFC-E-DAA-TN41751
Report Number: GSFC-E-DAA-TN41751
Meeting Information
Meeting: Venus Modeling Workshop
Location: Cleveland, OH
Country: United States
Start Date: May 9, 2017
End Date: May 11, 2017
Sponsors: Lunar and Planetary Inst.
Distribution Limits
Public
Copyright
Public Use Permitted.
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