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Coupled Pacific Rim megadroughts contributed to the fall of the MingDynasty’s capital in 1644 CE 被引量:1

环太平洋特大干旱导致公元1644年明朝首都的陷落
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摘要 Historical documents provide evidence for regional droughts preceding the political turmoil and fall of Beijing in 1644 CE,when more than 20 million people died in northern China during the late Ming famine period.However,the role climate and environmental changes may have played in this pivotal event in Chinese history remains unclear.Here,we provide tree-ring evidence of persistent megadroughts from1576 to 1593 CE and from 1628 to 1644 CE in northern China,which coincided with exceptionally cold summers just before the fall of Beijing.Our analysis reveals that these regional hydroclimatic extremes are part of a series of megadroughts along the Pacific Rim,which not only impacted the ecology and society of monsoonal northern China,but likely also exacerbated external geopolitical and economic pressures.This finding is corroborated by last millennium reanalysis data and numerical climate model simulations revealing internally driven Pacific sea surface temperature variations and the predominance of decadal scale La Ni?a-like conditions to be responsible for precipitation decreases over northern China,as well as extensive monsoon regions in the Americas.These teleconnection patterns provide a mechanistic explanation for reoccurring drought spells during the late Ming Dynasty and the environmental framework fostering the fall of Beijing in 1644 CE,and the subsequent demise of the Ming Dynasty.
作者 Feng Chen Tao Wang Xiaoen Zhao Jan Esper Fredrik Charpentier Ljungqvist Ulf Büntgen Hans W.Linderholm David Meko Hongna Xu Weipeng Yue Shijie Wang Yujiang Yuan Jingyun Zheng Wei Pan Fidel Roig Martín Hadad Mao Hu Jiachang Wei Fahu Chen 陈峰;王涛;赵晓恩;Jan Esper;Fredrik Charpentier Ljungqvist;Ulf Bintgen;Hans W.Linderholm;David Meko;许红娜;岳伟鹏;王世杰;袁玉江;郑景云;潘威;Fidel Roig;Martin Hadad;胡茂;魏家昌;陈发虎
出处 《Science Bulletin》 SCIE EI CAS CSCD 2024年第19期3106-3114,共9页 科学通报(英文版)
基金 supported by the Basic Science Center for Tibetan Plateau Earth System(BSCTPES,41988101) the National Natural Science Foundation of China(32061123008) Ulf Büntgen and Jan Esper were supported by the ERC Advanced Grant Monostar(Ad G 882727) the Czech Science Foundation(23-08049S,HYDRO8) Fredrik Charpentier Ljungqvist was supported by the Swedish Research Council(Vetenskapsr?det,2018-01272) the Marianne and Marcus Wallenberg Foundation(MMW 20220114)。
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