雪
北极的
云计算
北极
大气科学
气候学
气象学
环境科学
材料科学
地质学
海洋学
物理
计算机科学
操作系统
作者
Annan Chen,Chuanfeng Zhao,Haotian Zhang,Yikun Yang,Jing Li,Yanshun Yu,Qinghong Zhang,Jiefeng Li
摘要
Clouds and surface albedo significantly affect the energy balance on Earth. With the snow/ice melting in the Arctic, an understanding of how this impacts short-wave cloud radiative effects (CRE) remains a critical, yet poorly understood, question. We analysed snow/ice coverage (SIC) changes and their impact on the CRE in the Arctic from the past to the present and to future scenarios. From 2000 to 2020, the SIC decreased by -0.058/decade, leading to CRE changes (∆CRE) at the top of the atmosphere and surface by -1.25 ± 0.49 and -0.21 ± 0.20 W/m²/decade, with an average reduction in the sea ice melting rate ([Formula: see text]) of 3.45 cm/year. The sea ice coverage and the CRE remained relatively stable from 1850 to 1915, followed by dramatic declines in both sea ice coverage and CRE under both 245 and 585 shared socio-economic pathways post-2015. The snow/ice loss amplifies the cloud-induced short-wave cooling effect, partly slowing further melting yet not preventing overall snow/ice loss.
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