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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Indian Ocean Summer Monsoon (IOSM)-dynamics within the past 4 ka recorded in the sediments of Lake Nam Co, central Tibetan Plateau (China)
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Indian Ocean Summer Monsoon (IOSM)-dynamics within the past 4 ka recorded in the sediments of Lake Nam Co, central Tibetan Plateau (China)

机译:青藏高原中部南科湖沉积物中记录的过去4 ka内的印度洋夏季风(IOSM)动力学

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摘要

In September 2008 several cores (68 cm-115 cm length) (water depth: 93 m) were retrieved from Lake Nam Co (southern-central Tibetan Plateau; 4718 m a.s.l.). This study focuses on the interpretation of high-resolution (partly 0.2 cm) data from three gravity cores and the upper part of a 10.4 m long piston core, i.e., the past 4000 cal BP in terms of lake level changes, hydrological variations in the catchment area and consequently variations in monsoon strength. A wide spectrum of sedimentological, geochemical and mineralogical investigations was carried out. Results are presented for XRF core-scans, grain size distribution, XRD-measurements and SEM-image analyses. These data are complemented by an age-depth model using ~(210)Pb and ~(137)Cs analyses as well as eleven AMS- ~(14)C-ages. This model is supported by excellent agreement between secular variations determined on one of the gravity cores to geomagnetic field models. This is a significant improvement of the chronology as most catchments of lacustrine systems on the Tibetan Plateau contain carbonates resulting in an unknown reservoir effect for radiocarbon dates. The good correlation of our record to the geomagnetic field models confirms our age-depth model and indicates only insignificant changes in the reservoir effect throughout the last 4 ka.High (summer-) monsoonal activity, i.e. moist environmental conditions, was detected in our record between approximately 4000 and 1950 cal BP as well as between 1480 and 1200 cal BP. Accordingly, lower monsoon activity prevails in periods between the two intervals and thereafter. This pattern shows a good correlation to the variability of the Indian Ocean Summer Monsoon (IOSM) as recorded in a peat bog ~1000 km in NE direction from Lake Nam Co. This is the first time that such a supra regional homogenous monsoon activity is shown on the Tibetan Plateau and beyond. Finally our data show a significant lake level rise after the Little Ice Age (LIA) in Lake Nam Co which is suggested to be linked to glacier melting in consequence of rising temperatures occurring on the whole Tibetan Plateau during this time.
机译:2008年9月,从南湖(青藏高原中南部; 4718 m a.s.l.)取回了几个岩心(长68 cm-115 cm)(水深:93 m)。这项研究的重点是从三个重力岩心和一个10.4 m长的活塞岩心的上部(即过去4000 cal BP的湖泊水位变化,水文变化)解析高分辨率(约0.2 cm)数据。汇水面积,因此季风强度发生变化。进行了广泛的沉积学,地球化学和矿物学研究。给出了XRF核心扫描,晶粒尺寸分布,XRD测量和SEM图像分析的结果。这些数据通过使用〜(210)Pb和〜(137)Cs分析以及11个AMS-〜(14)C年龄的年龄深度模型进行了补充。该模型由重力磁芯之一确定的长期变化与地磁场模型之间的出色一致性得到支持。这是时序上的重大改进,因为青藏高原的大多数湖泊系统集水区都含有碳酸盐,导致放射性碳年代的储层效应未知。我们的记录与地磁场模型的良好相关性证实了我们的年龄-深度模型,并表明在整个最后4 ka期间储层效应只有微不足道的变化。在我们的记录中检测到高(夏季)季风活动,即潮湿的环境条件大约在4000至1950 cal BP之间以及1480至1200 cal BP之间。因此,较低的季风活动在两个间隔及其后的时间段内占主导。这种模式显示出与印度洋夏季风(IOSM)的变化具有良好的相关性,这是从纳姆湖(Nam Co)向东北方向〜1000 km的泥炭沼泽中记录的。这是首次显示出这种超区域性均匀季风活动在青藏高原及其他地区。最后,我们的数据显示,在南科湖的小冰期(LIA)之后,湖水位显着上升,这被认为与冰川融化有关,这是由于这段时期内整个青藏高原的温度升高所致。

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