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Sensitivity of Summer Drying to Spring Snow-Albedo Feedback Throughout the Northern Hemisphere From Satellite Observations

机译:卫星观测对整个北半球夏季干燥对春季雪反照率反馈的敏感性

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The spring snow-albedo feedback (SAF) has been found to be positively correlated with summer drying in the United States in climate change simulations. However, whether this relationship exists in real climate is unclear. In this letter, we explored the relationship between spring SAF and summer drying with the help of satellite observations. It was found that a positive correlation between spring SAF and summer drying existed from 1982 to 2013. There was a negative interannual correlation between spring SAF strength and summer soil moisture (SM) (r <; -0.35) and a positive interannual correlation between spring SAF and land surface temperature (Ts) in summer (r > 0.35) throughout dry regions in western North America, Europe, and central Asia. Furthermore, the strength of the snow-cover component (-0.67 ± 0.06% · K-1, effect of Ts on land surface albedo (as) over surfaces transitioning from snowcovered to snow-free conditions) was about twice the magnitude of the metamorphosis component (-0.31 ± 0.07% · K-1, effect of Ts on as over snow-covered surfaces) during the spring, which explained the majority of spring SAF strength over the Northern Hemisphere (NH) snow-covered landmass during 1982-2013. Meanwhile, the sensitivity of summer SM and Ts to changes in the snow-cover component rather than the metamorphosis component dominated the relationship between spring SAF and summer drying over the NH. This was the first attempt to provide observational evidence for the sensitivity of summer drying to spring SAF over the NH.
机译:在气候变化模拟中,已经发现春季雪反照率反馈(SAF)与美国夏季干燥呈正相关。但是,这种关系是否存在于实际气候中尚不清楚。在这封信中,我们借助卫星观测研究了春季SAF和夏季干燥之间的关系。发现1982年至2013年春季SAF与夏季干燥之间存在正相关。春季SAF强度与夏季土壤水分(SM)之间呈负的年际相关(r <; -0.35),春季之间存在正的年际相关。在北美西部,欧洲和中亚的干旱地区,夏季的SAF和地表温度(T s )(r> 0.35)。此外,积雪成分的强度(-0.67±0.06%·K -1 ,T s 对地面反照率(a s < / sub>)从积雪过渡到无雪的表面)大约是变质分量(-0.31±0.07%·K -1 )的两倍,T s < / sub>在积雪覆盖的地面上),这解释了1982-2013年期间北半球(NH)积雪大陆上大部分春季SAF强度。同时,夏季SM和T s 对积雪成分而不是变质成分变化的敏感性主导了春季SAF和NH上夏季干燥之间的关系。这是首次尝试提供观测证据,证明夏季干燥对春季SAF的敏感性高于NH。

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