4.5 Article

Fate of three major rivers in the Bohai Sea: A model study

Journal

CONTINENTAL SHELF RESEARCH
Volume 31, Issue 14, Pages 1490-1499

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.csr.2011.06.013

Keywords

River plumes; Tidal mixing; Wind stress; Stratification; China; Bohai Sea

Categories

Funding

  1. initial foundation for Ph.D. [B8206070004]
  2. open foundation of the key subject in Environmental Engineering of Shanghai Ocean University [B8206090004]
  3. Shanghai Education Committee [J50702]

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Huanghe (Yellow River), Haihe and Liaohe are three major rivers flowing into the Bohai Sea and account for more than 80% of the freshwater and land-drained material inputs annually. The fate of three rivers in the seawaters correlates with the transport and distribution of the riverine sediments and nutrients, and further exerts a profound influence on the local marine ecosystem dynamics. Therefore, the evolution of the river plumes under the influence of the freshwater buoyancy, the tidal forcing and the wind stress are examined using a three-dimensional primitive equation ocean circulation model, independently and jointly. It is found that both tide and wind stirring can deteriorate the stabilization of the water column caused by the freshwater buoyancy; however, the processes are different The tide stirring originates from the seafloor due to the bottom friction as the tidal wave propagates into the shallow waters, and then the turbulent kinetic energy dissipates upward. On the other hand, the wind stirring proceeds in the up-down direction. The influences of different winds on the evolution of the river plumes are also examined. Since the situation of each river mouth is different, the wind influence is also distinct. At last, the fate of three major rivers driven by the combined tidal forcing and climatology winds is reproduced, and the simulated salinity distribution shows a reasonable agreement with that observed, meaning that the river plume evolution plays a crucial role in shaping the salinity distribution in BS. (C) 2011 Elsevier Ltd. All rights reserved.

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