Transferring Simulation of Pollutants in YinLuan River Open Channel under Traffic Accidents

Author:

Zhang Chun Xue1,Wang Li Lin2,Wang Chao2,Yang Shu Yi1,You Xue Yi1

Affiliation:

1. Tianjin University

2. Erwangzhuang Administrative Bureau of Water Diversion Project from Luanhe River to Tianjin

Abstract

The water diversion project from Luanhe River to Tianjin is a large-scale project, which solved the water shortage of Tianjin city. Because the long water supply open channel along highroads, the traffic emergent incidents bring great potential dangers to the water supply of Tianjin. In this paper, the prediction model of traffic emergent incidents in YinLuan River Open Channel was built and the transferring of pollutants under typical scenes was simulated by EFDC model. The evolution and affective area of pollutant in open channel was obtained. The results provide a scientific basis for the decision makers to take effective measures.

Publisher

Trans Tech Publications, Ltd.

Reference12 articles.

1. Tian Shiyang, Nie Rongzhi. Characteristics of water delivery and methods of stable water diversion in YinLuan River Open Channel [J]. Haihe Water Resources, Vol. 6 (1999), pp.21-22.

2. Gao Ying, Yang Jing, Song Wenjie. Prevention of water pollution emergencies and disposal in YinLuan River Open Channel [J]. Haihe Water Resources, (2009), pp.21-22.

3. Ji Zhengang, Hu Guangdou, Shen Jian, Wan Yongshan. Three-dimensional modeling of hydrodynamic processes in the St. Lucie Estuary [J]. Estuarine, Coastal and Shelf Science, Vol. 73 (2007), pp.188-200.

4. James C S, Boriah V. Modeling algae growth in an open-channel raceway [J]. Journal of Computational Biology, Vol. 7 (2010), pp.895-906.

5. Wu Guozheng, Xu Zongxue. Prediction of algal blooming using EFDC model: case study in the Daoxiang Lake [J]. Ecological Modelling, Vol. 222 (2011), pp.1245-1252.

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