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Perturbed physics ensemble using the MIROC5 coupled atmosphere–ocean GCM without flux corrections: experimental design and results

Authors :
Hideo Shiogama
Toru Nozawa
Rei Nobui
Youichi Kamae
Ayako Abe-Ouchi
Tokuta Yokohata
Seita Emori
Julia C. Hargreaves
Ryouta O'ishi
Masahide Kimoto
James D. Annan
Masahiro Watanabe
Manabu Abe
Tomoo Ogura
Masakazu Yoshimori
Source :
Climate Dynamics. 39:3041-3056
Publication Year :
2012
Publisher :
Springer Science and Business Media LLC, 2012.

Abstract

In this study, we constructed a perturbed physics ensemble (PPE) for the MIROC5 coupled atmosphere–ocean general circulation model (CGCM) to investigate the parametric uncertainty of climate sensitivity (CS). Previous studies of PPEs have mainly used the atmosphere-slab ocean models. A few PPE studies using a CGCM applied flux corrections, because perturbations in parameters can lead to large radiation imbalances at the top of the atmosphere and climate drifts. We developed a method to prevent climate drifts in PPE experiments using the MIROC5 CGCM without flux corrections. We simultaneously swept 10 parameters in atmosphere and surface schemes. The range of CS (estimated from our 35 ensemble members) was not wide (2.2–3.2 °C). The shortwave cloud feedback related to changes in middle-level cloud albedo dominated the variations in the total feedback. We found three performance metrics for the present climate simulations of middle-level cloud albedo, precipitation, and ENSO amplitude that systematically relate to the variations in shortwave cloud feedback in this PPE.

Details

ISSN :
14320894 and 09307575
Volume :
39
Database :
OpenAIRE
Journal :
Climate Dynamics
Accession number :
edsair.doi...........44c9585f560cc18ae64487052534b118
Full Text :
https://doi.org/10.1007/s00382-012-1441-x