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Rapid fluvial incision along the Yellow River during headward basin integration

机译:向前盆地整合过程中沿黄河的快速河流切缝。

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The onset of rapid exhumation along the high relief margins of orogenic plateaux is often used as a proxy for the timing of surface uplift~(1-3). However, processes that inhibit incision by rivers, such as spatially variable rock uplift~4, orographic changes in rainfall~5 and channel damming by glaciers or landslides~(6,7)may lead to exhumation that significantly lags surface uplift8. Here we reconstruct the timing, rate and pattern of fluvial incision along the Yellow River in northeastern Tibet using stratigraphic, geochronologic and geomorphic data from sedimentary basins along the present-day river course. We find that the onset of fluvial incision occurred substantially later than the onset of mountain building, 14-8 million years (Myr) age~9. Fluvial incision initiated at the plateau margin 1.8 Myr ago~(10)and progresed upstream~(1) at a rate of approximately 350 km Myr~(-1). We conclude that the fluvial incision was a result of a climatically driven expansion of lake systems in the region~(t1hat 2led ,to1 lake3 sp)ilover and consequently the integration of the modern Yellow River.
机译:沿造山带高起伏边缘快速发掘尸体通常被用来作为表层隆起的时间〜(1-3)。但是,抑制河流切入的过程,例如空间变化的岩石隆起〜4,降雨的地形变化〜5和冰川或滑坡造成的河道筑坝〜(6,7),可能导致掘尸发掘明显滞后于表面隆起8。在这里,我们利用沿今河道沿河沉积盆地的地层,年代学和地貌数据,重建了西藏东北部沿黄河的河床切开的时间,速度和方式。我们发现,河道切缝的发生基本上晚于山地建筑的发生,年龄为14-8百万年(Myr)〜9。在高原边缘1.8 Myr ago〜(10)处开始河流切开,并向上游〜(1)前进,速度约为350 km Myr〜(-1)。我们得出的结论是,河流切割是由于气候驱动的湖水系统(从二头到二头湖,到一头三湖)的扩张,因此是现代黄河整合的结果。

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