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A three-dimensional water quality model and its application to Jiaozhou Bay, China
Authors:Yan Zhang  Ying-lan Sun  Jing Yu  Dao-wei Yuan  Rui-jin Zhang
Institution:1. School of Ocean Science-Technology and Environment, Dalian Ocean University, Dalian, 116023, China
2. Ocean University of China, Qingdao, 266003, China
3. College of Physical and Environmental Oceanography, Ocean University of China, Qingdao, 266003, China
4. National Marine Environment Monitoring Center, Dalian, 116023, China
Abstract:A three-dimensional coupled physical and water quality model was developed and applied to the Jiaozhou Bay to study water quality involving nutrients, biochemical oxygen demand, dissolved oxygen, and phytoplankton that are closely related to eutrophication process. The physical model is a modified ECOM-si version with inclusion of flooding/draining processes over the intertidal zone. The water quality model is based on WASP5 which quantifies processes governing internal nutrients cycling, dissolved oxygen balance and phytoplankton growth. The model was used to simulate the spatial distribution and the temporal variation of water quality in the Jiaozhou Bay for the period of May 2005 to May 2006. In addition, the effect of reduction of riverine nutrients load was simulated and evaluated. The simulated results show that under the influence of nutrients discharged from river, the concentrations of nutrients and phytoplankton were higher in the northwest and northeast of the bay, and decreased from the inner bay to the outer. Affected by strong tidal mixing, the concentrations of all state variables were vertically homogeneous except in the deeper regions where a small gradient was found. Obvious seasonal variation of phytoplankton biomass was found, which exhibited two peaks in March and July, respectively. The variation of riverine waste loads had remarkable impact on nutrients concentration in coastal areas, but slightly altered the distribution in the center of the bay.
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