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Lake level reconstruction for 12.8-2.3 ka of the Ngangla Ring Tso closed-basin lake system, southwest Tibetan Plateau

机译:青藏高原西南部恩格拉拉左祖闭流域湖泊系统12.8-2.3 ka的湖面重建

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摘要

We present a shoreline-based, millennial-scale record of lake-level changes spanning 12.8-23 ka for a large closed-basin lake system on the southwestern Tibetan Plateau. Fifty-three radiocarbon and eight U-Th series ages of tufa and beach cement provide age control on paleoshorelines ringing the basin, supplemented by nineteen ages from shell and aquatic plant material from natural exposures generally recording lake regressions. Our results show that paleo-Ngangla Ring Tso exceeded modern lake level (4727 m asp continuously between similar to 12.8 and 2.3 ka. The lake was at its highstand 135 m (4862 m asl) above the modem lake from 103 ka to 8.6 ka. This is similar to other closed-basin lakes in western Tibet, and coincides with peak Northern Hemisphere summer insolation and peak Indian Summer Monsoon intensity. The lake experienced a series of millennial-scale oscillations centered on 11.5, 10.8, 83, 5.9 and 3.6 ka, consistent with weak monsoon events in proxy records of the Indian Summer Monsoon. It is unclear whether these events were forced by North Atlantic or Indian Ocean conditions, but based on the abrupt lake-level regressions recorded for Ngangla Ring Tso, they resulted in significant periodic reductions in rainfall over the western Tibetan Plateau throughout the Holocene. (C) 2014 University of Washington. Published by Elsevier Inc All rights reserved.
机译:对于青藏高原西南部的大型封闭盆地湖泊系统,我们提出了基于海岸线的千年变化记录,记录了湖级变化的跨度为12.8-23 ka。石灰岩和海滩水泥的53个放射性碳素年龄和8个U-Th系列年龄为环流盆地的古海岸线提供了年龄控制,自然暴露的壳和水生植物材料中的19个年龄通常记录了湖泊的退化。我们的研究结果表明,古Ngangla环左上方的水位超过现代湖水位(4727 m asp,连续时间介于12.8和2.3 ka之间);该湖的高水位从103 ka到8.6 ka在现代湖上方135 m(4862 m asl)。这与西藏西部其他封闭盆地的湖泊相似,与北半球夏季日照强度峰值和印度夏季风强度峰值相吻合,该湖经历了一系列以千年级尺度11.5、10.8、83、5.9和3.6 ka为中心的振荡。 ,这与印度夏季风的代理记录中的弱季风事件一致,目前尚不清楚这些事件是北大西洋还是印度洋条件造成的,但基于Ngangla Ring Tso记录的突然的湖面回归,它们导致了重大的(C)2014华盛顿大学,Elsevier Inc.保留所有权利。

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