地质学
新生代
高原(数学)
古生物学
构造盆地
介形虫
古气候学
年表
生物地层学
磁性地层学
构造隆升
构造学
中新世晚期
气候变化
海洋学
数学分析
数学
作者
Leyi Li,Hong Chang,Alex Farnsworth,Nathan A. Niemi,Peter D. Clift,Xiaoke Qiang,Chunsheng Jin,Sun Jian,Chengguo Guan,Peng Zhang,Hongxuan Lu,Weiguo Liu,Balázs Bradák,Ping Lü,Yunfa Miao,Zhisheng An
出处
期刊:Geological Society of America Bulletin
[Geological Society of America]
日期:2023-10-12
摘要
Currently, the climatic implications associated with the Cenozoic tectonic history and growth mechanisms of the Tibetan Plateau lack consensus and remain controversial. This is due in part to chronological uncertainties and few paleoelevation records distributed in the central to northern Tibetan Plateau, which we address here with the development of a robust chronology (using magnetostratigraphy, biostratigraphy, detrital zircons, and regional radiochronologic dating) and a paleoelevation reconstruction for the Tuotuohe Basin (central-northern Tibet). We refined the age of the Tuotuohe Formation (37−33 Ma), Yaxicuo Formation (33−23.6 Ma), and Wudaoliang Formation (23.6−19.7 Ma). We estimated early Oligocene (ca. 29 Ma) paleotemperatures of the Tuotuohe Basin from 11 °C to 16.1 °C, which correspond to paleoelevations of 2.9 km (±0.4 km) when the relative humidity is 64% and 2.5 km (±0.5 km) when this value is 75%, using various methods including ostracod assemblages, gastropods, charophytes, branched glycerol dialkyl glycerol tetraether analysis, regional empirical formulas, and climate model simulation. Paleoelevation data and existing geological evidence in the vicinity indicate that late Eocene to late Oligocene uplift was associated with upper-crustal shortening. Since the middle Miocene, uplift has been associated with convective removal of lithospheric mantle and/or lower-crustal flow beneath the Hoh Xil Basin.
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