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Synoptic time-scale variability of sediment temperature profile and sound speed in shallow seas derived from in situ observations

机译:沉积物温度曲线的概透时间尺度变异性与原位观测中浅海中的声速

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摘要

In this study, to investigate the synoptic time-scale variability of sediment temperature profile and sound speed in shallow seas, one-month-long in situ observations were conducted in Jiaozhou Bay using a newly designed sediment measurement system. A typhoon passage and a heavy rainfall process were captured during the observation. The sediment temperature increased immediately after the significant bottom water temperature increase induced by typhoon passage. A significant increase in the sediment warming rate could be identified at a depth as deep as 0.8 m below seafloor (mbs), and a significant increase in downward sediment heat flux at 0.5 mbs lasted until five days after the typhoon passed. The sediment sound speed was also observed to decrease or increase as soon as the bottom water salinity significantly decreased or the bottom water temperature significantly increased. Moreover, the pore water salinity-which can affect the sediment sound speed-cannot be conducted like heat but can be changed only by diffusion or convection processes, and the static diffusion of salt was too slow for the observed sediment sound speed variation; we therefore conclude that in addition to heat conduction, the pore water convection may play an important role in the synoptic time-scale variations of the sediment temperature and sound speed, which is also consistent with the simulation results.
机译:在这项研究中,研究浅海沉积物温度曲线和声速的沉积时间级变异性,使用新设计的沉积物测量系统在胶州湾进行了一个月长的原位观察。在观察期间捕获了台风通道和大雨的过程。在台风通道诱导的显着底部水温后,沉积温度立即增加。沉积物变暖速率的显着增加可以在海底(MBS)以下深度为0.8米的深度下鉴定,下降沉积物热量的显着增加持续至下半年后5天。一旦底部水盐显着降低或底部水温显着增加,也观察到沉积声速度降低或增加。此外,孔水盐度 - 可以影响沉积物声速 - 不能像热量一样进行,但可以仅通过扩散或对流过程来改变,并且对于观察到的沉积物声速变化,盐的静态扩散太慢了;因此,我们得出结论,除了热传导之外,孔隙水对流可能在沉积温度和声速的沉积时间级变化中发挥重要作用,这也与模拟结果一致。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|1922-1923|共2页
  • 作者

    G.- B. Yang; Q. Zheng; X. Hu;

  • 作者单位

    Key Laboratory of Marine Science and Numerical Modeling First Institute of Oceanography Ministry of Natural Resources Qingdao 266061 China;

    Key Laboratory of Marine Science and Numerical Modeling First Institute of Oceanography Ministry of Natural Resources Qingdao 266061 China;

    Key Laboratory of Marine Science and Numerical Modeling First Institute of Oceanography Ministry of Natural Resources Qingdao 266061 China;

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