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

机译:modelling and analysis of Hydrodynamics and Water Quality for Rivers in the Northern Cold Region of China

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摘要

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.
机译:本研究选择了中国北方寒冷地区最典型的河流牡丹江作为研究对象。采用环境流体动力学法则(EFDC)为牡丹江市区建立了二维水质模型,并对冰覆盖期和开水期的CODCr和NH3N浓度进行了模拟和分析。结果表明,这两个时期的粗糙度系数和污染物综合腐烂率显着不同。具体而言,冰覆盖期的粗糙度系数大于开放水期的粗糙度系数,而前一时期的衰减率小于后者。此外,根据对模拟结果的分析,在冰覆盖时期,衰减率降低的主要原因是温度下降,上游入流减少和冰层覆盖。其中,冰盖是粗糙度增加的主要因素。这些方面在这项工作中进行了更详细的讨论。该模型也可以推广到其他寒冷地区河流的水动力水质过程模拟研究。

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