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过去两千年的年代际气候变率:特征与机制(英文)

Decadal climate variability during the pre-industrial Common Era:characteristics and mechanisms

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【作者】 宁亮Zhengyu LiuMichael E.Mann刘健严蜜孙炜毅陈可凡覃燕敏温琴

【Author】 Liang Ning;Zhengyu Liu;Michael E.Mann;Jian Liu;Mi Yan;Weiyi Sun;Kefan Chen;Yanmin Qin;Qin Wen;State Key Laboratory of Climate System Prediction and Risk Management;Key Laboratory for Virtual Geographic Environment, Ministry of Education;State Key Laboratory Cultivation Base of Geographical Environment Evolution and Regional Response of Jiangsu Province;Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application;School of Geography, Nanjing Normal University;Department of Geography, The Ohio State University;Department of Earth and Environmental Science, Annenberg School for Communication, University of Pennsylvania;Jiangsu Provincial Key Laboratory for Numerical Simulation of Large Scale Complex Systems, School of Mathematical Science, Nanjing Normal University;

【通讯作者】 Zhengyu Liu;Michael E.Mann;刘健;

【机构】 State Key Laboratory of Climate System Prediction and Risk ManagementKey Laboratory for Virtual Geographic Environment, Ministry of EducationState Key Laboratory Cultivation Base of Geographical Environment Evolution and Regional Response of Jiangsu ProvinceJiangsu Center for Collaborative Innovation in Geographical Information Resource Development and ApplicationSchool of Geography, Nanjing Normal UniversityDepartment of Geography, The Ohio State UniversityDepartment of Earth and Environmental Science, Annenberg School for Communication, University of PennsylvaniaJiangsu Provincial Key Laboratory for Numerical Simulation of Large Scale Complex Systems, School of Mathematical Science, Nanjing Normal University

【摘要】 In this article, we present a comprehensive review of decadal to multi-decadal climate variability during the Common Era(CE), focusing on their characteristics and mechanisms. We begin by summarizing recent advances in proxy reconstructions that reveal the paleo-evidence of decadal to multi-decadal climate variability during the CE. Decadal to multi-decadal variability has been observed in extensive sets of proxy records in the CE. Despite improvements in proxy records in the type, temporal resolution, and temporal coverage, there remains a lack of clear consistency in the preferred time scales and phases of the variability among different records. The agreements of decadal characteristics between proxy records and model simulations are higher during the periods with strong external forcings, but lower during periods of weak external forcing. We subsequently describe the recent modeling studies on the influences of external forcings and internal variability on decadal to multi-decadal climate variability with associated physical mechanisms, and some emerging research topics. Despite the improved understanding of climate variability and regional climate changes, especially over the eastern Asia summer monsoon region,several inconsistencies still exist, such as the amplitudes of responses to external forcings and relative contributions from external forcings and internal variability. The review ends with perspectives for future directions to reconcile discrepancies of decadal climate variability, such as applications of paleoclimate data assimilation and isotope-enabled transient climate modeling, and implications for projecting future decadal to multi-decadal climate changes and for improving the accuracy of decadal predictions.

【Abstract】 In this article, we present a comprehensive review of decadal to multi-decadal climate variability during the Common Era(CE), focusing on their characteristics and mechanisms. We begin by summarizing recent advances in proxy reconstructions that reveal the paleo-evidence of decadal to multi-decadal climate variability during the CE. Decadal to multi-decadal variability has been observed in extensive sets of proxy records in the CE. Despite improvements in proxy records in the type, temporal resolution, and temporal coverage, there remains a lack of clear consistency in the preferred time scales and phases of the variability among different records. The agreements of decadal characteristics between proxy records and model simulations are higher during the periods with strong external forcings, but lower during periods of weak external forcing. We subsequently describe the recent modeling studies on the influences of external forcings and internal variability on decadal to multi-decadal climate variability with associated physical mechanisms, and some emerging research topics. Despite the improved understanding of climate variability and regional climate changes, especially over the eastern Asia summer monsoon region,several inconsistencies still exist, such as the amplitudes of responses to external forcings and relative contributions from external forcings and internal variability. The review ends with perspectives for future directions to reconcile discrepancies of decadal climate variability, such as applications of paleoclimate data assimilation and isotope-enabled transient climate modeling, and implications for projecting future decadal to multi-decadal climate changes and for improving the accuracy of decadal predictions.

【基金】 supported by the National Key Research and Development Program of China (2023YFF0804700 and 2020YFA0608601);the Science and Technology Innovation Project of Laoshan Laboratory (LSKJ202203300);the Strategic Priority Research Program of the Chinese Academy of Sciences (XDB40000000);the National Natural Science Foundation of China (42130604, 42111530182, and 42075049);Open Funds of State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences (SKLLQG1820 and SKLLQG1930)
  • 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2025年13期
  • 【分类号】P467
  • 【下载频次】10
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