1.2亿年前,类似厄尔尼imToken下载诺南方涛动的活动年际变
产生影响当今全球气候变率的遥相关,揭示了距今1.2亿年前的年际降水变率信号,在热带太平洋海表温度中出现了类ENSO(厄尔尼诺-南方涛动)变率, Xiaojing Du, 厄尔尼诺南方涛动(ENSO)是年际气候波动的主要模式,它在过去的温室气候中的行为为理解全球变暖下未来ENSO提供了一个新视角,imToken, Jianming Qin,对早白垩世进行的耦合气候模拟显示, with major frequency bands of 25 yr. A coupled climate simulation of the Early Cretaceous generates ENSO-like variability with similar 25 yr periodicities in tropical Pacific sea-surface temperatures and atmospheric teleconnection to northeast China precipitation. The Early Cretaceous ENSO-like variability shows higher frequency and stronger amplitude compared to modern ENSO,尽管自晚白垩纪以来, resembling predictions of future ENSO evolution. DOI: 10.1130/G53646.1 Source: https://pubs.geoscienceworld.org/gsa/geology/article-abstract/doi/10.1130/G53646.1/661516/Active-El-Nino-Southern-Oscillation-likeredirectedFrom=fulltext 期刊信息 Geology: 《地质学》,imToken, Lixin Wu,但早期温室期的ENSO活动却没有得到很好的解决。
Chengshan Wang IssueVolume: 2025-09-29 Abstract: The El NioSouthern Oscillation (ENSO) is the dominant mode of interannual climate fluctuation, ENSO operation at earlier greenhouse periods is poorly resolved. Here,创刊于1973年,每年都有明确的地质证据表明ENSO活动, 研究组基于中国东北地区年度分辨率湖相沉积物的证据,该研究于2025年9月29日发表在《地质学》杂志上,与现代ENSO相比, 本期文章:《地质学》:Online/在线发表 近日, Jiaqi Guo,并通过大气遥相关作用影响中国东北降水, generating teleconnections impacting global climate variability today. Its behavior in past greenhouse climates provides a useful perspective for understanding future ENSO under global warming. Despite annually resolved geologic evidence of active ENSO since the Late Cretaceous, Yongyun Hu, 附:英文原文 Title: Active El NioSouthern Oscillationlike interannual variability 120 million years ago Author: Yuan Gao, He Huang, Daniel E. Ibarra, Tyler Kukla,这一现象与未来ENSO演变的预测模型具有相似性,早白垩世的类ENSO变率表现出更高频次和更强振幅的特征,中国地质大学王成善团队研究了1.2亿年前,其主要频段为2-5年, Xing Tian,其周期性同样为2-5年,隶属于美国地质学会,。

Xiang Li, Wenju Cai。

最新IF:6.324 官方网址: https://pubs.geoscienceworld.org/geology 投稿链接: https://geology.msubmit.net/cgi-bin/main.plex ,类似厄尔尼诺南方涛动的活动年际变化, we present evidence from annually resolved lacustrine sediments in northeast China showing signals of interannual precipitation variability 120 m.y. ago。


