首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Arctic low cloud changes as observed by MISR and CALIOP: Implication for the enhanced autumnal warming and sea ice loss
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Arctic low cloud changes as observed by MISR and CALIOP: Implication for the enhanced autumnal warming and sea ice loss

机译:MISR和CALIOP观测到的北极低云变化:意味着秋季变暖和海冰损失增加

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摘要

Retreat of Arctic sea ice extent has led to more evaporation over open water in summer and subsequent cloud changes in autumn. Studying recent satellite cloud data over the Arctic Ocean, we find that low (0.5-2 km) cloud cover in October has been increasing significantly during 2000-2010 over the Beaufort and East Siberian Sea (BESS). This change is consistent with the expected boundary layer cloud response to the increasing Arctic evaporation accumulated during summer. Because low clouds have a net warming effect at the surface, October cloud increases may be responsible for the enhanced autumnal warming in surface air temperature, which effectively prolong the melt season and lead to a positive feedback to Arctic sea ice loss. Thus, the new satellite observations provide a critical support for the hypothesized positive feedback involving interactions between boundary layer cloud, water vapor, temperature, and sea ice in the Arctic Ocean.
机译:北极海冰面积的退缩导致夏季露天水蒸发量增加,秋季秋季云量变化。研究北冰洋上的最新卫星云数据,我们发现2000年至2010年期间,波弗特和西伯利亚海(BESS)的低云覆盖(0.5-2 km)显着增加。这种变化与预期边界层云对夏季累积的北极蒸发增加的响应一致。由于低云在地表有净增暖作用,因此十月云的增加可能是秋季地表气温升高的原因,这有效地延长了融化季节并导致对北极海冰损失的积极反馈。因此,新的卫星观测结果为假设的正反馈提供了关键支持,该正反馈涉及北冰洋边界层云,水蒸气,温度和海冰之间的相互作用。

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