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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Changes in summer sea ice, albedo, and portioning of surface solar radiation in the Pacific sector of Arctic Ocean during 1982–2009
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Changes in summer sea ice, albedo, and portioning of surface solar radiation in the Pacific sector of Arctic Ocean during 1982–2009

机译:1982–2009年期间北冰洋太平洋区域夏季海冰,反照率和地表太阳辐射比例的变化

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SSM/I sea ice concentration and CLARA black-sky composite albedo were used to estimate sea ice albedo in the region 70°N–82°N, 130°W–180°W. The long-term trends and seasonal evolutions of ice concentration, composite albedo, and ice albedo were then obtained. In July–August 1982–2009, the linear trend of the composite albedo and the ice albedo was 20.069 and 20.046 units per decade, respectively. During 1 June to 19 August, melting of sea ice resulted in an increase of solar heat input to the ice-ocean system by 282 MJ?m~(-2) from 1982 to 2009. However, because of the counter-balancing effects of the loss of sea ice area and the enhanced ice surface melting, the trend of solar heat input to the ice was insignificant. The summer evolution of ice albedo matched the ice surface melting and ponding well at basin scale. The ice albedo showed a large difference between the multiyear and first-year ice because the latter melted completely by the end of a melt season. At the SHEBA geolocations, a distinct change in the ice albedo has occurred since 2007, because most of the multiyear ice has been replaced by first-year ice. A positive polarity in the Arctic Dipole Anomaly could be partly responsible for the rapid loss of summer ice within the study region in the recent years by bringing warmer air masses from the south and advecting more ice toward the north. Both these effects would enhance ice-albedo feedback.
机译:使用SSM / I海冰浓度和CLARA黑天空复合反照率来估计70°N–82°N,130°W–180°W区域的海冰反照率。然后获得了冰浓度,复合反照率和冰反照率的长期趋势和季节性演变。 1982年至2009年7月至8月,复合反照率和冰反照率的线性趋势分别为每十年20.069和20.046个单位。在6月1日至8月19日期间,海冰融化导致从1982年至2009年,输入到冰洋系统的太阳热增加了282 MJ?m〜(-2)。但是,由于由于海冰面积的减少和冰面融化的增强,太阳向冰输入热量的趋势微不足道。夏季冰反射率的演变与流域规模的冰面融化和积水很好。多年反演和第一年冰的反照率显示出很大的差异,因为第一年冰在融化季节结束之前完全融化了。自2007年以来,在SHEBA地理位置,冰反照率发生了明显变化,因为大部分多年生冰已被第一年生冰取代。近年来,北极偶极子异常中的正极性可能是造成研究区域内夏季冰块迅速流失的部分原因,这是通过使来自南部的较暖的空气团向北部平流的。这两种效果都会增强冰反照率的反馈。

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