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Article Dans Une Revue Atmospheric Chemistry and Physics Discussions Année : 2007

Towards a better representation of the solar cycle in general circulation models

Résumé

It is shown that a high-resolution short-wave (SW) heating rate parameterization is necessary to simulate solar cycle variations in atmospheric models. The improved Freie Universität Berlin (FUB) high-resolution radiation scheme (FUBRad) is introduced and compared to the 4-band ECHAM5 SW radiation scheme of Fouquart and Bonnel (FB). Both schemes are validated against the detailed radiative transfer model libRadtran. FUBRad produces realistic heating rate variations during the solar cycle and a temperature response that is in good agreement with observations. The SW heating rate response with the FB scheme is about 20 times smaller than with FUBRad and cannot produce the observed temperature signal. Comparison of the total short-wave heating rates under moderate solar conditions shows good agreement between FUBRad, FB and libRadtran up to 80 km indicating that both parameterizations are well suited for climate integrations that do not take solar variability into account. The FUBRad scheme has been implemented as a sub-submodel of the Modular Earth Submodel System (MESSy).
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Dates et versions

hal-00302382 , version 1 (18-06-2008)

Identifiants

  • HAL Id : hal-00302382 , version 1

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K. M. Nissen, K. Matthes, U. Langematz, B. Mayer. Towards a better representation of the solar cycle in general circulation models. Atmospheric Chemistry and Physics Discussions, 2007, 7 (1), pp.45-64. ⟨hal-00302382⟩

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