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Changes in distal sedimentation regime of the Rhone delta system controlled by subaquatic channels (Lake Geneva, Switzerland/France)

机译:受水下水道控制的罗纳河三角洲系统远端沉积状态的变化(日内瓦湖,瑞士/法国)

摘要

Seismic reflection profiles combined with sediment cores reveal centennial changes in the proximal and distal sedimentation regime in the Rhone River delta system (Lake Geneva), which is dominated by sublacustrine channels. From detailed analyses of the thickness distribution of depositional units and the occurrence of turbidites, at least two shifts of the primarily active sublacustrine channels are inferred for the past 1500. years. The first northward shift is dated at 1480 ± 20. cal. AD and was likely linked to a centennial flood in the Swiss Rhone Valley that occurred in 1469. AD and acted either as a direct cause or as a preconditioning factor favoring the shifting. A shift back southward in 1720 ± 90. cal. AD may have been caused either by long-term human impact related to the first embankment constructions on the Rhone River or by a natural event such as the 1755. AD Brig earthquake or the centennial flood of 1640. AD. Another important change in the sedimentation regime occurs in 1775 ± 125. cal. AD when the onset of Rhone turbidite deposition is recorded in the distal sediments. This relative >progradation> of the Rhone turbidites is certainly due to the disconnection of the Vieux Rhone branch before 1826 and the subsequent first Rhone River correction, starting in 1863 that led to the present single active Rhone subaquatic channel.
机译:地震反射剖面与沉积物核心相结合,揭示了罗讷河三角洲系统(日内瓦湖)近端和远端沉积体制的百年变化,该系统主要由湖底河道控制。通过对沉积单元厚度分布的详细分析和浊度的发生,可以推断出在过去1500年中,主要活跃的湖底湖泊通道至少发生了两次偏移。第一次向北移动的日期为148​​0±20。公元,可能与1469年发生在瑞士罗纳河谷的百年洪水有关。公元是造成这种转变的直接原因或前提因素。向后移,以1720±90. cal。向南。 AD可能是由于与罗纳河上第一批堤防建设有关的长期人类影响,也可能是由于自然事件(例如1755年。ADBrig地震或1640年百年洪水)造成的。沉积状态的另一个重要变化发生在1775±125. cal。当远端的沉积物中记录了Rhone浊质沉积开始时的AD。 Rhone浊度的这种相对“增长”当然是由于1826年前Vieux Rhone分支的断开和随后的第一次Rhone River校正(始于1863年),导致形成了目前的一条活跃的Rhone亚水道。

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