Potential winter-season bias of annual temperature variations in monsoonal Tibetan Plateau since the last deglaciation
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Updated Time:2023-04-09 19:52:17 Hits:333
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Abstract
Knowledge of paleotemperature variation in the Tibetan Plateau (TP) can provide potential insights to evaluate the future climate change under ongoing global warming and to improve our understanding of the controversial Holocene temperature changes between stacked proxy and model simulation. Here, we present a 115-yr-resolution record of bGDGTs (branched glycerol dialkyl glycerol tetraethers) based mean annual air temperature (MAAT) from Ngamring Co in the southern TP, spanning the past 18 ka. Our record reveals the MAAT generally responds to annual insolation and greenhouse gases changes, showing slight cooling during the deglaciation and remaining at low temperature until 6 ka BP, and then warming up to present. Combination with other records reveals the regional annual temperature shows a warming trend in the Holocene, which is in agreement with the model simulation rather than the stacked proxies. Importantly, the distinct cold interval during 10e6 ka BP is not present either in the simulation or in most of records for the adjacent region. We suggest such cold interval was a response to the positive North Atlantic Oscillation (NAO) conditions during the early Holocene, which led to a decrease in winter temperature and increased snowfall in the southern TP. Considering the consistent pattern of local annual and winter insolation over past 18 ka, and the high correlation between annual and winter temperature over the past 40 yr, we cautiously indicate that winter season may be crucial for the annual temperature in the TP. Additional quantitative records with clear seasonal signals, especially in winter, are needed to confirm our hypothesis.
Keywords
Tibetan plateau,Lake sediments,Branched GDGTs,Annual temperature,Winter season
Submission Author
孙喆
四川师范大学
侯孝欢
中国科学院青藏高原研究所
冀克家
中国科学院青藏高原研究所
袁侃
中国科学院青藏高原研究所
栗粲圪
河北师范大学
王明达
辽宁师范大学
侯居峙
中国国科学院青藏高原研究所
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