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Model Development for Drinking Water Security in Tidal River, Case Study: Minjiang River, Southeast of Fujian, China

机译:潮汐河饮水安全模型开发,案例研究:闽江,福建东南

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This paper presents a hydrodynamic and water quality modeling system for Fuzhou Section of the Minjiang River. Historical water quality monitoring and pollution survey show that lots of water pollution sources were located close to the protection zone of drinking water sources of Fuzhou City. To obtain quantitative knowledge about the water environment in Fuzhou section of the Minjiang River and protect the drinking water source, an integrated modeling system was developed based on environmental fluid dynamics code (EFDC) and water quality analysis simulation program (WASP) modeling framework. The EFDC was used to simulate hydrodynamic in the river, and the resulting flow information was incorporated into the WASP to simulate the balance of dissolved oxygen. Using data in different hydrological conditions, model calibration and model validation were conducted in this paper. Three scenarios of water environmental management were designed in this paper. Scenarios analyses were conducted using the developed model system to evaluate the water quality variations influenced by pollution sources. The results indicate that the tide downstream has a distinct influence on the hydrodynamics, there is a weak diffusion condition during the process of pollutants on migration in the tidal reach, and the model will provide an effective tool to ensure drinking water security.
机译:本文提出了闽江福州段水动力和水质模型系统。历史水质监测和污染调查显示,大量的水污染源都靠近喝抚州市水源保护区。要获取有关在闽江福州段水环境定量知识,保护饮用水源,集成的建模系统是基于环境流体力学代码(EFDC)和水质分析模拟程序(WASP)模型框架开发的。所述EFDC被用来模拟液力在河边,并且将所得的流信息被并入WASP模拟溶解氧的平衡。使用在不同的水文条件数据,模型校准和模型验证本文进行的。水环境管理的三个方案进行了设计,在本文中。场景分析使用所开发的模型系统,以评估由污染来源影响的水质量的变化进行的。结果表明,潮下游对流体力学有显着影响,有污染物对感潮河段迁移过程中,弱扩散条件,该模型将提供确保饮用水安全的有效工具。

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