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Constraints of salinity- and sediment-induced stratification on the turbidity maximum in a tidal estuary

机译:盐度和沉积物引起的潮汐分层在潮汐河口中的浊度上的约束

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摘要

The vertical density gradients of salinity and suspended sediment concentration (SSC) cause stratification in estuaries, which play a vital role in the turbulence structure, water mixing, and sediment transport. To investigate the effect of stratification, especially SSC-induced stratification, on maintaining the estuarine turbidity maximum (ETM), we conducted in situ measurements on sediment dynamics at the upper and central ETM sites in the South Passage of Changjiang Estuary in July 2018. The gradient Richardson number was estimated as a proxy for the stratification that is attributable to salinity or/and SSC. We found that salinity-induced stratification was observed mainly on the surface and in the middle layers, whereas SSC-induced stratification occurred mainly in the near-bottom layers. Furthermore, at the central ETM, the baroclinic effect was enhanced during the neap tide when the salinity-induced stratification was stronger than that during the spring tide. In the early phase of floods with minimum velocity during the neap tide, salinity-induced stratification suppressed the turbulence and vertical diffusion of sediments. Moreover, the flocculation enhanced the settling process within the water column. Consequently, high concentrations of fine-grained sediments formed near the bottom and promoted SSC-induced stratification, thereby leading to the continuous accumulation and trapping of sediments. In conclusion, the interactions among the "salinity- and SSC-induced stratification" processes served as crucial constraints of the temporal and spatial variations of the ETM in the Changjiang Estuary.
机译:盐度和悬浮沉积物浓度(SSC)的垂直密度梯度(SSC)引起河口分层,这在湍流结构,水混合和沉积物运输中起着至关重要的作用。为了研究分层,特别是SSC诱导的分层的影响,在维持河口浊度最大值(ETM)的情况下,我们在2018年7月在南部河口南部的南部和中央ETM站点的沉积物动力学对沉积物动态进行。该梯度Richardson号码估计是可归因于盐度或/和SSC的分层的代理。我们发现主要在表面和中间层上观察到盐度诱导的分层,而SSC诱导的分层主要发生在近底层中。此外,在ETM中,当盐度诱导的分层比春潮期间较强时,在NeAP潮中提高了氨基氯效应。在NeAP潮期间具有最小速度的洪水的早期阶段,盐度诱导的分层抑制了沉积物的湍流和垂直扩散。此外,絮凝增强了水柱内的沉降过程。因此,在底部附近形成的高浓度的细粒沉积物并促进了SSC诱导的分层,从而导致沉积物的连续积累和诱捕。总之,“盐度和SSC诱导的分层”过程中的相互作用是长江口中ETM的时间和空间变化的关键约束。

著录项

  • 来源
    《Geo-marine letters》 |2020年第5期|共15页
  • 作者单位

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

    Nanjing Univ Minist Educ Key Lab Coast &

    Isl Dev Sch Geog &

    Oceanog Sci Nanjing 210093 Peoples R China;

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

    Nanjing Univ Minist Educ Key Lab Coast &

    Isl Dev Sch Geog &

    Oceanog Sci Nanjing 210093 Peoples R China;

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

    East China Normal Univ State Key Lab Estuarine &

    Coastal Res Sch Marine Sci Shanghai 200241 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

    Suspended sediment concentration; Salinity; Stratification; Flocculation; Changjiang; Estuarine turbidity maximum (ETM);

    机译:悬浮沉积物浓度;盐度;分层;絮凝;长江;河口浊度最大(ETM);

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