4.3 Article

Modelling and Analysis of Hydrodynamics and Water Quality for Rivers in the Northern Cold Region of China

出版社

MDPI
DOI: 10.3390/ijerph13040408

关键词

cold region; hydrodynamic; water quality; model; numerical simulation

资金

  1. Major Science and Technology Program for Water Pollution Control and Treatment in China, Study on the process of agricultural non-point source pollution and water quality target management in freezing and thawing conditions [2014ZX07201-009-001]
  2. Mudan River Water Quality Integrated Security Technology and Engineering Demonstration Project [2012ZX07201002]
  3. China Scholarship Council [201204910355]

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In this study, the Mudan River, which is the most typical river in the northern cold region of China was selected as the research object; Environmental Fluid Dynamics Code (EFDC) was adopted to construct a new two-dimensional water quality model for the urban sections of the Mudan River, and concentrations of CODCr and NH3N during ice-covered and open-water periods were simulated and analyzed. Results indicated that roughness coefficient and comprehensive pollutant decay rate were significantly different in those periods. To be specific, the roughness coefficient in the ice-covered period was larger than that of the open-water period, while the decay rate within the former period was smaller than that in the latter. In addition, according to the analysis of the simulated results, the main reasons for the decay rate reduction during the ice-covered period are temperature drop, upstream inflow decrease and ice layer cover; among them, ice sheet is the major contributor of roughness increase. These aspects were discussed in more detail in this work. The model could be generalized to hydrodynamic water quality process simulation researches on rivers in other cold regions as well.

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