GSTDTAP  > 气候变化
DOI10.1007/s00382-018-4422-x
A survey of the atmospheric physical processes key to the onset of Arctic sea ice melt in spring
Huang, Yiyi1; Dong, Xiquan1; Xi, Baike1; Deng, Yi2
2019-04-01
发表期刊CLIMATE DYNAMICS
ISSN0930-7575
EISSN1432-0894
出版年2019
卷号52页码:4907-4922
文章类型Article
语种英语
国家USA
英文摘要

September sea ice concentration (SIC) is found to be most sensitive to the early melt onset over the East Siberian Sea and Laptev Sea (73 degrees-84 degrees N, 90 degrees-155 degrees) in the Arctic, a region defined here as the area of focus (AOF). The areal initial melt date for a given year is marked when sea ice melting extends beyond 10% of the AOF size. With this definition, four early melting years (1990, 2012, 2003, 1991) and four late melting years (1996, 1984, 1983, 1982) were selected. The impacts and feedbacks of atmospheric physical and dynamical variables on the Arctic SIC variations were investigated for the selected early and late melting years based on the NASA MERRA-2 reanalysis. The sea ice melting tends to happen in a shorter period of time with larger magnitude in late melting years, while the melting lasts longer and tends to be more temporally smooth in early melting years. The first major melting event in each year has been further investigated and compared. In the early melting years, the positive Arctic Oscillation (AO) phase is dominant during springtime, which is accompanied by intensified atmospheric transient eddy activities in the Arctic and enhanced moisture flux convergence in the AOF and consequently enhanced northward transport of moist and warm air. As a result, positive anomalies of air temperature, precipitable water vapor (PWV) and/or cloud fraction and cloud water path were found over the AOF, increasing downward longwave radiative flux at the surface. The associated warming effect further contributes to the initial melt of sea ice. In contrast, the late melt onset is usually linked to the negative AO phase in spring accompanied with negative anomalies of PWV and downward longwave flux at the surface. The increased downward shortwave radiation during middle to late June plays a more important role in triggering the melting, aided further by the stronger than normal cloud warming effects.


英文关键词Arctic September sea ice minimum retreat Arctic sea ice melt onset Atmospheric physical processes Cloud and radiation impact Moisture and heat transport
领域气候变化
收录类别SCI-E
WOS记录号WOS:000467187600061
WOS关键词RADIATION PROPERTIES ; CLOUD ; COVER ; RECORD
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/181931
专题气候变化
作者单位1.Univ Arizona, Dept Hydrol & Atmospher Sci, 1133 E James Rogers Way,POB 210011, Tucson, AZ 85721 USA;
2.Georgia Inst Technol, Sch Earth & Atmospher Sci, Atlanta, GA 30332 USA
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Huang, Yiyi,Dong, Xiquan,Xi, Baike,et al. A survey of the atmospheric physical processes key to the onset of Arctic sea ice melt in spring[J]. CLIMATE DYNAMICS,2019,52:4907-4922.
APA Huang, Yiyi,Dong, Xiquan,Xi, Baike,&Deng, Yi.(2019).A survey of the atmospheric physical processes key to the onset of Arctic sea ice melt in spring.CLIMATE DYNAMICS,52,4907-4922.
MLA Huang, Yiyi,et al."A survey of the atmospheric physical processes key to the onset of Arctic sea ice melt in spring".CLIMATE DYNAMICS 52(2019):4907-4922.
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