A numerical study on the circulation and tide in a zigzag bay

Acta Oceanologica Sinica - Tập 34 - Trang 119-128 - 2015
Huaming Yu1,2, Zhaohua Wang1, Liang Kuang3, Lu Wang1,2, Xianwen Bao1, He Wu4, Xin Wang4, Xiaodong Deng5
1College of Physical and Environmental Oceanography, Ocean University of China, Qingdao, China
2Physical Oceanography Laboratory of the Ministry of Education, Ocean University of China, Qingdao, China
3Environmental Resource Management, Inc., King of Prussia, USA
4National Ocean Technology Center, State Oceanic Administration, Tianjin, China
5East China Sea Marine Forecasting Center, East China Sea Branch, State Oceanic Administration, Shanghai, China

Tóm tắt

The Shacheng Bay (SCB) is one of the most complex coastal bays in southeast China and due to the fact of complicated geometry and dynamic coastal processes, it is considered as a challenging area for the numerical simulation of its hydrodynamic characteristics. The most advanced finite volume ocean model, finite-volume coastal ocean model (FVCOM), has adopted to simulate this hydrodynamic system, where tidal currents, tidal residual current and dye diffusion processes were studied and analyzed quantitatively. The validation of this numerical model matches well with various observation data, including elevation and current data. The misfit of a tidal elevation has a relative standard error of 3.66% and 4.67% for M2 and S2 tide components. The current validation shows a good match with an average error of 10 cm/s and 8° in the speed major axis and its direction respectively between the simulation and the measurement. This proves the robustness and reliability of this model. It is also found that the cape effect is significant and important in this system. The dye diffusion simulations show a 53 d flushing period for the whole inner bay waterbody. The results are of its first kind for understanding the hydrodynamic system in the SCB and they can provide helpful and trustful scientific information for others.

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