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Sediment resuspension in winter in an exceptional low suspended sediment concentration area off Qinhuangdao in the Bohai Sea

机译:渤海秦皇岛近悬沉积沉积物浓度区的冬季沉积物重新悬浮

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摘要

Seawater with low suspended sediment concentration (SSC) and high salinity dominates the sea area off Qinhuangdao all year round, especially in winter, which is an exceptional case since most of the coastal waters in the Bohai Sea are turbid. Being one of the most famous coastal tourist resorts in the area, it is crucial to keep the seawater around Qinhuangdao clear and unpolluted. Three bottom-mooring systems were deployed in the low SSC region from February to March 2017 for up to 22 days to reveal the processes and mechanisms of local sediment resuspension. The observation results showed that during the strongest wind of the whole deployment period, the sediment resuspension process included a turbulent resuspension event that occurred in the high turbulent kinetic energy period, and a continuous resuspension event when the bed shear stress (BSS) was larger than critical. The turbulent resuspension event was characterised by high-turbidity resuspension of sediments near the bed in the form of pulsation, with adepth of influence not more than the thickness of the bottom boundary layer. It was found to be triggered by strong turbulence driven by storm winds. In contrast the continuous resuspension could be attributed to high wave-dominated BSS. During storm winds, high concentrations of suspended sediment in the upper and middle layers appeared to lag the wind speed by about 8-10 h. In contrast, the turbulent resuspension event occurred at the same time as the strong winds. In-situ measurements from all three moorings indicate that it is the local weak sediment resuspension, even under the influence of storm winds in winter, that causes the formation of the low SSC area off Qinhuangdao.
机译:悬浮沉积物浓度低(SSC)和高盐度的海水占据了秦皇岛全年海域的海域,特别是在冬季,这是一个特殊的案例,因为渤海大多数沿海水域都是混浊的。作为该地区最着名的沿海旅游度假村之一,将海水围绕秦皇岛清晰,未扣除至关重要。从2月至2017年3月,在低SSC地区部署了三个底部系泊系统长达22天,透露局部沉积物重新悬浮的过程和机制。观察结果表明,在整个部署期的最强风中,沉积物重新悬浮过程包括在高湍流动力期间发生的湍流重悬,以及当床剪切应力(BSS)大于时的连续重悬浮事件危急。湍流重悬的事件的特征在于脉动形式的床附近的沉积物的高浊度重悬,影响不大于底部边界层的厚度。发现它被风暴风驱动的强烈湍流引发。相比之下,连续重悬浮可归因于高波导的BSS。在风暴中,上层和中间层中的高浓度悬浮沉积物似乎将风速滞后约8-10小时。相比之下,湍流的重避事件发生在强风的同时。所有三个系泊的原位测量表明它是局部弱沉积物重避,即使在冬季风暴风的影响下,导致秦皇岛低SSC区的形成。

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  • 来源
    《Oceanographic Literature Review》 |2020年第10期|2148-2148|共1页
  • 作者

    M. Jiang; C. Pang; Z. Liu; J. Jiang;

  • 作者单位

    Key Laboratory of Ocean Circulation and Waves Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 China;

    Key Laboratory of Ocean Circulation and Waves Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 China;

    Key Laboratory of Ocean Circulation and Waves Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 China;

    Key Laboratory of Ocean Circulation and Waves Institute of Oceanology Chinese Academy of Sciences Qingdao 266071 China;

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