Abstract

Radiative convective equilibrium of the atmosphere with a given distribution of relative humidity is computed as the asymptotic state of an initial value problem. The results show that it takes almost twice as long to reach the state of radiative convective equilibrium for the atmosphere with a given distribution of relative humidity than for the atmosphere with a given distribution of absolute humidity. Also, the surface equilibrium temperature of the former is almost twice as sensitive to change of various factors such as solar constant, CO2 content, O3 content, and cloudiness, than that of the latter, due to the adjustment of water vapor content to the temperature variation of the atmosphere. According to our estimate, a doubling of the CO2 content in the atmosphere has the effect of raising the temperature of the atmosphere (whose relative humidity is fixed) by about 2C. Our model does not have the extreme sensitivity of atmospheric temperature to changes of CO2 content which was adduced by Möller.

Keywords

Atmosphere (unit)Relative humidityRadiative equilibriumHumidityAtmospheric sciencesWater vaporApparent temperatureThermodynamic equilibriumEnvironmental scienceAtmospheric temperatureCloud coverConvectionLiquid water contentRadiative transferMeteorologyThermodynamicsPhysics

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Publication Info

Year
1967
Type
article
Volume
24
Issue
3
Pages
241-259
Citations
1705
Access
Closed

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Syukuro Manabe, R. T. Wetherald (1967). Thermal Equilibrium of the Atmosphere with a Given Distribution of Relative Humidity. Journal of the Atmospheric Sciences , 24 (3) , 241-259. https://doi.org/10.1175/1520-0469(1967)024<0241:teotaw>2.0.co;2

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DOI
10.1175/1520-0469(1967)024<0241:teotaw>2.0.co;2