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首页> 外文期刊>Science Advances >Increasing riverine heat influx triggers Arctic sea ice decline and oceanic and atmospheric warming
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Increasing riverine heat influx triggers Arctic sea ice decline and oceanic and atmospheric warming

机译:增加河流热流入触发北极海冰下降和海洋和大气变暖

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摘要

Arctic river discharge increased over the last several decades, conveying heat and freshwater into the Arctic Ocean and likely affecting regional sea ice and the ocean heat budget. However, until now, there have been only limited assessments of riverine heat impacts. Here, we adopted a synthesis of a pan-Arctic sea ice–ocean model and a land surface model to quantify impacts of river heat on the Arctic sea ice and ocean heat budget. We show that river heat contributed up to 10% of the regional sea ice reduction over the Arctic shelves from 1980 to 2015. Particularly notable, this effect occurs as earlier sea ice breakup in late spring and early summer. The increasing ice-free area in the shelf seas results in a warmer ocean in summer, enhancing ocean–atmosphere energy exchange and atmospheric warming. Our findings suggest that a positive river heat–sea ice feedback nearly doubles the river heat effect.
机译:北极河放电在过去几十年中增加,将热水和淡水输送到北冰洋,可能影响区域海冰和海洋热预算。然而,到目前为止,河流热影响的评估仅有限。在这里,我们采用了泛北极海冰海洋模型和土地表面模型的合成,以量化河流对北极海冰和海洋热预算的影响。从1980年到2015年,河流热量促使北极货架上的10%的区域冰川减少了10%。特别值得注意,这种效果在春季和初夏早期的海冰分手时出现。货物海洋中不断增加的无冰面积导致夏季温暖的海洋,增强海洋气氛能量交流和大气变暖。我们的研究结果表明,积极的河流热海冰反馈几乎加倍河流热效果。

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