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Analytical investigation of the atmospheric radiation limits in semigray atmospheres in radiative equilibrium Cover

Analytical investigation of the atmospheric radiation limits in semigray atmospheres in radiative equilibrium

By:  and    
Open Access
|Jan 2003

Abstract

We model the wavelength-dependent absorption of atmospheric gases by assuming constant mass absorption coefficients in finite-width spectral bands. Such a semigray atmosphere is analytically solved by a discrete ordinate method. The general solution is analyzed for a water vapor saturated atmosphere that also contains a carbon dioxide-like absorbing gas in the infrared. A multiple stable equilibrium with a relative upper limit in the outgoing long-wave radiation is found. Differing from previous radiative–convective models, we find that the amount of carbon dioxide strongly modifies the value of this relative upper limit. This result is also obtained in a gray (i.e., equal absorption ofradiation at all infrared wavelengths) water vapor saturated atmosphere. The destabilizing effect of carbon dioxide implies that massive carbon dioxide atmospheres are more likely to reach a runaway greenhouse state than thin carbon dioxide ones.

Language: English
Page range: 328 - 337
Submitted on: Apr 8, 2002
Accepted on: Feb 25, 2003
Published on: Jan 1, 2003
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2003 Toni Pujol, Gerald R. North, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.