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典型文献
Sea surface temperature evolution in the Yellow Sea Warm Current pathway and its teleconnection with high and low latitude forcing during the mid-late Holocene
文献摘要:
Sea surface temperature (SST) in the Yellow Sea Warm Current (YSWC) pathway is sensitive to the East Asian Winter Monsoon (EAWM) and YSWC. However, the role of the YSWC in the evolution of regional SST remains unclear. Here, we present new U 3 k7' based SST and grain size sequences spanning the last 6092 years in the sediment core Z1, which was retrieved from the central Yellow Sea muddy area. Overall, U 3 k7'-SST gradually increased since 6.1 ka BP, with a series of centennial-scale fluctuations. Its variation was mainly caused by EAWM when YSWC was weak between 6.1 and ~3.9 ka BP, as shown by the end-member content of grain size. However, after YSWC was fully developed, i.e., since ~3.9 ka BP, it exerted critical effects on SST evolution in its pathway. The 1010- and 538-year cycles of the SST sequence indicated a basic control of solar activity on the oceanic conditions in the Yellow Sea. It is suggested that the variation of total solar irradiance was amplified by thermohaline circulation and then transmitted to the Yellow Sea through the EAWM. Meanwhile, the tropical Pacific signal of El Ni?o was transmitted to the YSWC through the Kuroshio Current. The dual properties of warm water transported by YSWC to compensate the EAWM and driving by Kuroshio Current closely linked the variation of SST in the YSWC pathway to the Northern Hemisphere high latitude climate and the tropical Pacific. These findings highlight the significance of YSWC on regional SST evolution and its teleconnection to high and low latitude forcing, which grains a better understanding of the long-term evolution of SST in the middle latitude Yellow Sea.
文献关键词:
作者姓名:
Zhong PI;Fengming CHANG;Tiegang LI;Yikun CUI
作者机构:
Key Laboratory of Marine Geology and Environment,Institute of Oceanology,Chinese Academy of Sciences,Qingdao 266071,China;University of Chinese Academy of Sciences,Beijing 100049,China;Laboratory for Marine Geology and Environment,Pilot National Laboratory for Marine Science and Technology(Qingdao),Qingdao 266237,China;Center for Ocean Mega-Science,Chinese Academy of Sciences,Qingdao 266071,China;Key Laboratory of Marine Sedimentology and Environmental Geology,First Institute of Oceanography,Ministry of Natural Resources(MNR),Qingdao 266061,China;School of Geography and Ocean Science,Collaborative Innovation Center of South China Sea Studies,Nanjing University,Nanjing 210023,China
引用格式:
[1]Zhong PI;Fengming CHANG;Tiegang LI;Yikun CUI-.Sea surface temperature evolution in the Yellow Sea Warm Current pathway and its teleconnection with high and low latitude forcing during the mid-late Holocene)[J].海洋湖沼学报(英文版),2022(01):93-109
A类:
YSWC,k7
B类:
Sea,surface,temperature,evolution,Yellow,Warm,Current,pathway,its,teleconnection,latitude,forcing,during,late,Holocene,SST,sensitive,East,Asian,Winter,Monsoon,EAWM,However,role,regional,remains,unclear,Here,present,new,size,sequences,spanning,last,years,sediment,core,Z1,which,was,retrieved,from,central,muddy,area,Overall,gradually,increased,since,ka,series,centennial,scale,fluctuations,Its,variation,mainly,caused,by,when,weak,between,shown,end,member,content,after,fully,developed,exerted,critical,effects,cycles,indicated,basic,control,solar,activity,oceanic,conditions,suggested,that,total,irradiance,amplified,thermohaline,circulation,then,transmitted,through,Meanwhile,tropical,Pacific,signal,El,Kuroshio,properties,warm,water,transported,compensate,driving,closely,linked,Northern,Hemisphere,climate,These,findings,highlight,significance,grains,better,understanding,long,term,middle
AB值:
0.458004
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