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A comparative study of the flux and fate of the Mississippi and Yangtze river sediments

机译:密西西比与长江沉积物的通量与命运的比较研究

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Large rivers play a key role in delivering water and sediment into the global oceans. Large-river deltas and associated coastlines are important interfaces for material fluxes that have a global impact on marine processes. In this study, we compare water and sediment discharge from Mississippi and Yangtze rivers by assessing: (1) temporal variation under varying climatic and anthropogenic impacts, (2) delta response of the declining sediment discharge, and (3) deltaic lobe switching and Holocene sediment dispersal patterns on the adjacent continental shelves. Dam constructions have decreased both rivers' sediment discharge significantly, leading to shoreline retreat along the coast. The sediment dispersal of the river-dominated Mississippi Delta is localized but for the tide-dominated Yangtze Delta is more diffuse and influenced by longshore currents. Sediment declines and relative sea level rises have led to coastal erosion, endangering the coasts of both rivers.
机译:大型河流在将水和沉积物交换到全球海洋中发挥着关键作用。大型河水和相关海岸线是对海洋过程产生全球影响的重要界面。在这项研究中,我们通过评估:(1)在不同气候和人为影响下的时间变异,(2)曲率下降,(3)Deltaic Lobe切换和全新世 - (2)δ响应,比较Mississippi和长江河的水和泥沙排出邻近的欧式架子上的沉积物分散模式。大坝建筑在沿海地区的海岸线撤退,大坝建筑降低了两个河流沉积物放电。河流主导的密西西比三角洲的沉积物分散是本地化的,但对于潮汐主导的长江三角洲更加弥漫,受龙岸电流影响。沉积物下降和相对海平面上升导致沿海侵蚀,危及两个河流的沿海。

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