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Field observations of turbulence, sediment suspension, and transport under breaking tidal bores

机译:湍流,沉积物悬浮液和潮汐孔下运输的现场观察

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摘要

Turbulence dynamics and sediment suspension, under intense tidal bore conditions are investigated using field observations from the Qiantang Estuary, China. During the passage of the bore the tidal current bottom generated turbulence is augmented by turbulence injection from the surface as part of the breaking processes of both bore front and the bore associated secondary waves. These processes lead to enhanced vertical mixing and vertical distribution of the adverted sediments. The latter contributes to increased sediment transport in the direction of the bore propagation that potentially modifies the normal tidally-driven estuarine sediment dynamics and morphology. The results show that turbulence intensity increases with increased tidal currents and oscillating motions associated with the breaking processes. At the early stage of the tidal bore, the vertical mixing of suspended sediment is more convective than diffusive due to the elevated length scales associated with bore and breaking secondary wave generated turbulence. Turbulent momentum and vertical sediment flux are determined by intermittent, large magnitude turbulent events (i.e., turbulent bursting). At early period of the tidal bore (~ 40s), inward and outward interactions contribute most to the Reynolds stress and vertical sediment flux, in contrast to later periods when sweep and ejection become more important. Negative vertical sediment flux (i.e., toward the bed) is observed, indicating that the sediment buoyancy acts as a source of turbulent kinetic energy, possibly due to the modification of vertical distribution of suspended sediment by the bore. These observations, in flow conditions under intense tidal bore breaking, reveal different sediment dynamics from traditional boundary process by injecting breaking induced turbulence which modifies the distribution and transport of the suspended sediment.
机译:湍流动力学和沉积物悬浮液在激烈的潮汐孔条件下,使用来自中国钱塘口河口的现场观测研究。在孔的通过期间,通过从表面喷射的湍流喷射来增强潮流底部产生的湍流作为两个孔前端和孔联的二次波的断裂过程的一部分。这些过程导致增强广告沉积物的垂直混合和垂直分布。后者有助于提高沉积物传输在孔的繁殖方向上,这可能改变正常的驱动偏毒素沉积物动力学和形态。结果表明,湍流强度随着潮汐电流的增加和与断裂过程相关的振荡运动而增加。在潮汐孔的早期阶段,由于与孔和断开次级波产生的湍流相关的升高的长度尺度,悬浮沉积物的垂直混合比扩散更热。湍流动量和垂直沉积物通量由间歇,大小湍流事件(即湍流爆裂)确定。在潮汐孔的早期(〜40秒),向内和向外的相互作用对雷诺应力和垂直沉积物助焊剂贡献最多,与后期的扫描和喷射变得更加重要。观察到负垂直沉积物通量(即,朝向床),表明沉积物浮力作为湍流动能的源,可能是由于孔的悬浮沉积物的垂直分布的改变。这些观察结果,在激烈的潮气孔隙中破碎的流动条件下,通过注入破碎的诱导湍流来揭示传统边界过程的不同沉积物动力学,该湍流改变悬浮沉积物的分布和运输。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1256-1257|共2页
  • 作者

    J. Tu; D. Fan; G. Voulgaris;

  • 作者单位

    State Key Laboratory of Marine Geology Tongji University Shanghai 200092 China;

    State Key Laboratory of Marine Geology Tongji University Shanghai 200092 China;

    State Key Laboratory of Marine Geology Tongji University Shanghai 200092 China;

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  • 正文语种 eng
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