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A sampler-based technique for the study of near-bed sediment dynamics: application in the eastern English Channel

机译:基于采样器的近床沉积物动力学研究技术:在东部英吉利海峡的应用

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摘要

A simple technique for studying near-bed hydrodynamics and sediment dynamics is presented. The method combines the use of (1) a benthic tripod hosting a series of electromagnetic current meters, and (2) a newly developed near-bed multi-level water-sediment mixture sampler. The instrument package was deployed successfully at a shallow water station in the eastern English Channel. The currents at elevation 0.9 m above the bottom were asymmetrical, the flood current peak being slightly stronger than the ebb current peak. At elevation 0.3 m above the bottom, the ebb/flood current peak asymmetry vanished. The observed SSCs (suspended sediment concentrations) were tidally modulated, with a contrasting vertical distribution over the ebb and flood phases of the tidal current: the profile was uniform in the ebb phase whereas a stratification appeared in the flood phase. The depth dependence and time evolution of the SSCs are attributable to a combination of local resuspension and advection-dispersion of remotely suspended fine sediment by ebb currents. Suspended sediment fluxes were uniform during the ebb phase and increased with elevation above the bottom during the flood phase.
机译:提出了一种研究近床水动力和泥沙动力学的简单技术。该方法结合了(1)容纳一系列电磁电流表的底架三脚架和(2)新开发的近床多层水沙混合物采样器的使用。该仪器包已成功部署在英吉利海峡东部的浅水站。底部上方0.9 m处的高度处的电流是不对称的,泛洪电流峰值略大于退潮电流峰值。在底部上方0.3 m处的海拔高度,起伏/洪流峰值不对称性消失了。潮汐的潮汐潮期和潮汐期的垂直分布呈反差:潮汐潮汐的剖面是均匀的,而洪水期则出现分层。 SSCs的深度依赖性和时间演化归因于局部悬浮和通过退潮使偏远悬浮细沉积物的对流扩散相结合。在退潮阶段,悬浮的泥沙通量是均匀的,而在洪水阶段,悬浮物的流量随着底部的升高而增加。

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