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典型文献
Large training dataset is crucial for analogue-based precipitation reconstruction during the early Holocene
文献摘要:
A long-standing question regarding the Holocene evolution of the East Asian Summer Monsoon(EASM)is whether it peaked dur-ing the early Holocene(EH)as inferred from rainfall-related proxy records[1,2],or during the mid-Holocene as inferred from eco-environmental records from northern China[3,4].Cheng et al.[5]recently suggested a new physical mechanism to reconcile this paradox by combining multi-proxy records with transient simula-tions in a climate-terrestrial ecosystem model.They concluded that,over northern China,EASM rainfall peaked during the EH,while the ecosystem was at its optimum during the mid-Holocene[5].The delayed ecosystem optimum is a result of the winter warming effect on vegetation and the subsequent feedback with soil moisture[5].This new mechanism not only enhances our understanding of the coupled climate-environment system,but also can potentially clarify outstanding issues on the driving mech-anism of EASM evolution in northern China.
文献关键词:
作者姓名:
Wenchao Zhang;Haibin Wu;Qin Li;Zhengyu Liu;Jun Cheng
作者机构:
Institute of Geology and Geophysics,Chinese Academy of Sciences,Beijing 100029,China;Center for Excellence in Life and Paleoenvironment,Chinese Academy of Sciences,Beijing 100044,China;College of Earth and Planetary Sciences,University of Chinese Academy of Sciences,Beijing 100049,China;School of Geography,Liaoning Normal University,Dalian 116029,China;Atmospheric Science Program,Department of Geography,The Ohio State University,Columbus OH 43210,USA;Center for Ocean-Atmosphere Interaction Research,Nanjing University of Information Science and Technology,Nanjing 210044,China
引用格式:
[1]Wenchao Zhang;Haibin Wu;Qin Li;Zhengyu Liu;Jun Cheng-.Large training dataset is crucial for analogue-based precipitation reconstruction during the early Holocene)[J].科学通报(英文版),2022(11):1118-1121
A类:
B类:
Large,training,dataset,crucial,analogue,precipitation,reconstruction,during,early,Holocene,long,question,regarding,evolution,East,Asian,Summer,Monsoon,EASM,whether,peaked,EH,inferred,from,rainfall,related,proxy,records,mid,environmental,northern,China,Cheng,recently,suggested,new,physical,mechanism,reconcile,this,paradox,by,combining,multi,transient,simula,tions,climate,terrestrial,ecosystem,model,They,concluded,that,over,while,was,its,optimum,delayed,result,winter,warming,effect,vegetation,subsequent,feedback,soil,moisture,This,not,only,enhances,our,understanding,coupled,but,also,can,potentially,clarify,outstanding,issues,driving
AB值:
0.571785
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