温带气旋
气候学
环境科学
气候模式
气候敏感性
大气科学
气候变化
季节性
地质学
生物
生态学
作者
Xianan Jiang,Hui Su,Jonathan H. Jiang,J. David Neelin,Longtao Wu,Yoko Tsushima,Gregory S. Elsaesser
标识
DOI:10.1038/s41467-023-41360-0
摘要
Abstract A large spread in model estimates of the equilibrium climate sensitivity (ECS), defined as the global mean near-surface air-temperature increase following a doubling of atmospheric CO 2 concentration, leaves us greatly disadvantaged in guiding policy-making for climate change adaptation and mitigation. In this study, we show that the projected ECS in the latest generation of climate models is highly related to seasonal variations of extratropical low-cloud fraction (LCF) in historical simulations. Marked reduction of extratropical LCF from winter to summer is found in models with ECS > 4.75 K, in accordance with the significant reduction of extratropical LCF under a warming climate in these models. In contrast, a pronounced seasonal cycle of extratropical LCF, as supported by satellite observations, is largely absent in models with ECS < 3.3 K. The distinct seasonality in extratropical LCF in climate models is ascribed to their different prevailing cloud regimes governing the extratropical LCF variability.
科研通智能强力驱动
Strongly Powered by AbleSci AI