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A new method for diagnosing radiative forcing and climate sensitivity

Geophysical Research Letters · 2004 · Vol. 31(3)
Jonathan M. GregoryWilliam IngramMichãel PalmerGareth S. JonesPeter A. StottRobert B. ThorpeJason LoweT. C. JohnsK. D. Williams

Abstract

We describe a new method for evaluating the radiative forcing, the climate feedback parameter (W m −2 K −1 ) and hence the effective climate sensitivity from any GCM experiment in which the climate is responding to a constant forcing. The method is simply to regress the top of atmosphere radiative flux against the global average surface air temperature change. This method does not require special integrations or off‐line estimates, such as for stratospheric adjustment, to obtain the forcing, and eliminates the need for double radiation calculations and tropopause radiative fluxes. We show that for CO 2 and solar forcing in a slab model and an AOGCM the method gives results consistent with those obtained by conventional methods. For a single integration it is less precise but since it does not require a steady state to be reached its precision could be improved by running an ensemble of short integrations.

Atmospheric and Environmental Gas DynamicsAtmospheric Ozone and ClimateAtmospheric chemistry and aerosolsRadiative forcingForcing (mathematics)Radiative transferTropopauseClimate sensitivityCloud forcingEnvironmental scienceAtmospheric sciencesClimate modelSensitivity (control systems)
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References
Radiative forcing and climate response
Journal of Geophysical Research Atmospheres · 1997 · 2,398 citations
Reconstruction of solar irradiance since 1610: Implications for climate change
Geophysical Research Letters · 1995 · 1,102 citations
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