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Holocene lake level history of the Tangra Yumco lake system, southern-central Tibetan Plateau

机译:青藏高原中南部Tangra Yumco湖系的全新世湖平面历史

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Massive carbonate banks representing ancient lacustrine deposits are exposed in the catchment of the lake Tangra Yumco (southern-central Tibetan Plateau) and nearby lake Xuru Co. Nine sediment samples were taken below and above these lacustrine deposits to determine periods of changing lake level using optically stimulated luminescence (OSL) applying a multiple-aliquot regeneration (MAR) protocol. According to facies and stratigraphy, samples below the carbonate banks indicate a rising and samples from above a falling lake level. The results indicate that the rising lake level of Tangra Yumco passed the sampling location at 10.5 and 2.1 ka while a falling lake level passed the sampling location at 0.9 ka. The rising lake level of Xuru Co passed the sampling location at 7.9 and 1.7 ka and a falling lake level at 0.5 ka showing a similar trend as at Tangra Yumco. Combining these results with recalculated cosmogenic nuclide ages and previously published feldspar luminescence data allows the establishment of a Holocene lake level reconstruction for Tangra Yumco, which is unique for the southern-central Tibetan Plateau. The lake level of Tangra Yumco crested a lake level highstand of 181-183m above the recent lake level prior to 8.5 ka and has generally fallen after 8.5 ka, with a minor lake level rise at 2.1 ka. Lake level variations at Tangra Yumco occur simultaneously with other lakes on the Tibetan Plateau indicating that variations were controlled by monsoonal dynamics with a moist early Holocene and a successive reduction of available moisture thereafter. The average rate of the lake level rise between 10.5 and 8.5 ka is at least 0.05m a(-1) (compared with a modern value of 0.38m a(-1)), providing valuable insights in the monsoonal impact on lake level change on the southern-central Tibetan Plateau.
机译:在Tangra Yumco湖(中南部高原)和附近的Xuru Co的流域暴露了代表古湖相沉积物的大量碳酸盐岩库。在这些湖相沉积物的上方和下方采集了9个沉积物样品,通过光学方法确定了湖面变化的时期应用多等分再生(MAR)方案激发光(OSL)。根据相和地层,碳酸盐岩堤下的样品表明上升,而湖面下降的样品表明。结果表明,Tangra Yumco的上升湖泊水平面在10.5和2.1 ka处通过了采样位置,而下降的湖平面则在0.9 ka处通过了采样位置。 Xuru Co的上升湖平面在7.9和1.7 ka处通过了采样位置,在0.5 ka下降了湖面,这与Tangra Yumco类似。将这些结果与重新计算的宇宙成因核素年龄和先前发布的长石发光数据相结合,可以为Tangra Yumco建立全新世湖水位重建,这在青藏高原中南部是独一无二的。 Tangra Yumco的湖面在8.5 ka之前达到了最近湖面以上181-183m的湖面高点,而在8.5 ka之后总体上有所下降,湖面略有上升,为2.1 ka。 Tangra Yumco的湖泊水位变化与青藏高原上的其他湖泊同时发生,这表明变化受季风动力学控制,早期全新世潮湿,此后逐渐减少了可用水分。在10.5和8.5 ka之间的平均湖泊水位上升速率至少为0.05ma(-1)(现代值为0.38ma(-1)),为季风对湖泊水位变化的影响提供了有价值的见解。青藏高原中南部。

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