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格陵兰冰盖质量变化的特征与机制初探
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作者 阮若梅 《气候变化研究快报》 2019年第4期473-483,共11页
格陵兰冰盖(GrIS)作为全球气候的重要调控因素,冰盖融化的水不仅使全球海平面上升,还令北大西洋亚极地区域的海水变淡,从而减弱深层对流,进而减缓大西洋经向翻转环流,这将影响全球热盐环流,并改变全球热量分布。本文基于GRACE重力卫星... 格陵兰冰盖(GrIS)作为全球气候的重要调控因素,冰盖融化的水不仅使全球海平面上升,还令北大西洋亚极地区域的海水变淡,从而减弱深层对流,进而减缓大西洋经向翻转环流,这将影响全球热盐环流,并改变全球热量分布。本文基于GRACE重力卫星数据、MAR区域模式数据、DMI天气站点数据和ERA全球再分析数据分析了GrIS质量变化在GRACE观测时期的时空特征;通过质量收支平衡以及表面能量平衡方法研究了控制GrIS质量变化的主要因素;并对GrIS质量变化的动力机制进行初步探讨。结果表明GrIS在2003~2012年质量加速损失,从2013年开始,质量损失趋于平缓,主要减缓的区域在GrIS东南部。2013年开始的GrIS减缓事件的原因是云量增多、反照率增强,净短波辐射减少进而夏季融化减少,这可能与夏季北大西洋涛动改变的气压场有关。 展开更多
关键词 格陵兰冰盖 夏季北大西洋涛动 质量收支 表面能量平衡
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Impact of Preceding Summer North Atlantic Oscillation on Early Autumn Precipitation over Central China 被引量:3
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作者 XU Han-Lie FENG Juan SUN Cheng 《Atmospheric and Oceanic Science Letters》 CSCD 2013年第6期417-422,共6页
This study examined the impact of the preceding boreal summer(June–August) North Atlantic Oscillation(NAO) on early autumn(September) rainfall over Central China(RCC). The results show that a significant positive cor... This study examined the impact of the preceding boreal summer(June–August) North Atlantic Oscillation(NAO) on early autumn(September) rainfall over Central China(RCC). The results show that a significant positive correlation exists between the preceding summer NAO and the early autumn RCC on the interannual timescale. In order to understand the physical mechanism between them, the role of ocean was investigated. It was found that the strong summer NAO can induce a tripole sea surface temperature anomaly(SSTA) in the North Atlantic; this SSTA pattern can persist until early autumn. The diagnostic analysis showed that the tripole SSTA pattern excites a downstream Atlantic-Eurasian(AEA) teleconnection, which contributes to an increase in RCC. The circulation anomalies related to SSTA caused by the weak NAO are opposite, so the RCC is less than normal. The results imply that the preceding summer NAO may be regarded as a forecast factor for the early autumn RCC. 展开更多
关键词 North Atlantic Oscillation early autumn rainfall tripole sea surface temperature anomaly Atlantic-Eurasian teleconnection atmospheric-oceanic coupled bridge
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Relationship between the Late Spring NAO and Summer Extreme Precipitation Frequency in the Middle and Lower Reaches of the Yangtze River 被引量:9
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作者 TTIAN Bao-Qiang FAN Ke 《Atmospheric and Oceanic Science Letters》 2012年第6期455-460,共6页
The relationship between the late spring North Atlantic Oscillation (NAO) and the summer extreme precipitation frequency (EPF) in the middle and lower reaches of the Yangtze River Valley (MLYRV) is examined using an N... The relationship between the late spring North Atlantic Oscillation (NAO) and the summer extreme precipitation frequency (EPF) in the middle and lower reaches of the Yangtze River Valley (MLYRV) is examined using an NECP/NCAR reanalysis dataset and daily precipitation data from 74 stations in the MLYRV. The results show a significant negative correlation between the May NAO index and the EPF over the MLYRV in the subsequent summer. In positive EPF index years, the East Asian westerly jet shifts farther southward, and two blocking high positive anomalies appear over the Sea of Okhotsk and the Ural Mountains. These anomalies are favorable to the cold air from the mid-high latitudes invading the Yangtze River Valley (YRV). The moisture convergence and the ascending motion dominate the MLYRV. The above patterns are reversed in negative EPF index years. A wave train pattern that originates from the North Atlantic extends eastward to the Mediterranean and then moves to the Tibetan Plateau and from there to the YRV, which is an important link in the May NAO and the summer extreme precipitation in the MLYRV. The wave train may be aroused by the tripole pattern of the SST, which can explain why the May NAO affects the summer EPF in the MLYRV. 展开更多
关键词 North Atlantic Oscillation summer extreme precipitation frequency the middle and lower reaches of the Yangtze River Valley East Asian westerly jet
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