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首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Time-integrated 3D approach of late Quaternary sediment-depocenter migration in the Tagus depositional system: From river valley to abyssal plain
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Time-integrated 3D approach of late Quaternary sediment-depocenter migration in the Tagus depositional system: From river valley to abyssal plain

机译:塔霍斯沉积系统中第四纪晚期沉积物-沉积中心迁移的时间积分3D方法:从河谷到深海平原

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摘要

Quantification of sediment volumes in continental to deep ocean basins is key to understanding processes of sediment distribution in source-to-sink depositional systems. Using our own and published data we present the first quantification of sediment-volume changes in basins along the course of a major southwest European river during the deglaciation. The salient points of this quantitative record in the Tagus and equivalent North Atlantic basins show crucial roles for sea level, climate and land-use in the distribution of sediments. The bypass of sediments starved the Tagus basins, and subsequently sedimentation mainly occurred on the Tagus Abyssal Plain during the sea-level lowstand of the Last Glacial Maximum. The main sediment depocenter rapidly shifted via the continental shelf to the Lower Tagus Valley during sea-level rise in the deglaciation period. Finally, the main sediment depocenter shifted further landward into the Lower Tagus Valley during sea-level high stand in the Holocene. During the high-stand phase (last 7 ky), sediment flux increased up to 2.5 times, due to climate and land-use changes. The average catchment denudation rate during the last 12 ky (0.04-0.1 mm/y) is in agreement with those of other European catchments. Our study clearly demonstrates the added value of detailed knowledge of 3D depocenter distribution, size and chronology. This allowed us to identify an increased sediment flux during the last 7 ky, which was not identified using local observations from boreholes alone. The uniqueness of the Tagus depositional system lies in the combination of a large accommodation space in the bedrock-confined Lower Tagus Valley, the steep lowstand-surface gradient and the narrow continental shelf with canyons indenting the shelf break. (C) 2015 Elsevier B.V. All rights reserved.
机译:定量分析大陆到深海盆地的沉积物体积是了解从源到汇沉积系统中沉积物分布过程的关键。利用我们自己的和已公开的数据,我们给出了欧洲西南部一条主要河流在冰消期间沿流域沉积物量变化的第一个量化值。塔霍斯和北大西洋等量盆地中这一定量记录的显着点显示出海平面,气候和土地利用在沉积物分布中的关键作用。沉积物的绕行使塔霍斯盆地饿死,随后的沉积主要发生在最后冰川最大值海平面低位期间的塔霍深渊平原。在冰消期海平面上升期间,主要沉积物沉积中心通过大陆架迅速转移到塔霍斯河下游谷。最后,在全新世的海平面升高时,主要的沉积物沉积中心进一步向内移动到塔霍河下游谷。在高位期(最后7 ky),由于气候和土地利用的变化,沉积物通量增加了2.5倍。最近12年(0.04-0.1毫米/年)的平均流域剥蚀率与其他欧洲流域的一致。我们的研究清楚地证明了有关3D震源分布,大小和年代的详细知识的附加值。这使我们能够确定在最后7 ky期间增加的泥沙通量,而仅通过钻孔进行的局部观测并没有发现这一点。塔霍斯沉积系统的独特性在于基岩密布的塔霍河下游谷地中容纳空间大,陡峭的低地表坡度和狭窄的大陆架以及峡谷使大陆架断裂的综合作用。 (C)2015 Elsevier B.V.保留所有权利。

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