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首页> 外文期刊>Journal of Environmental Management >Development of urban runoff model FFC-QUAL for first-flush water-quality analysis in urban drainage basins
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Development of urban runoff model FFC-QUAL for first-flush water-quality analysis in urban drainage basins

机译:开发用于城市流域初冲水水质分析的城市径流模型FFC-QUAL

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摘要

An urban runoff model that is able to compute the runoff, the pollutant loadings, and the concentrations of water-quality constituents in urban drainages during the first flush was developed. This model, which is referred to as FFC-QUAL, was modified from the existing ILLUDAS model and added for use during the water-quality analysis process for dry and rainy periods. For the dry period, the specifications of the coefficients for the discharge and water quality were used. During rainfall, we used the Clark and time -area methods for the runoff analyses of pervious and impervious areas to consider the effects of the subbasin shape; moreover, four pollutant accumulation methods and the washoff equation for computing the water quality each time were used. According to the verification results, FFC-QUAL provides generally similar output as the measured data for the peak flow, total runoff volume, total loadings, peak concentration, and time of peak concentration for three rainfall events in the Gunja subbasin. In comparison with the ILLUDAS, SWMM, and MOUSE models, there is little difference between these models and the model developed in this study. The proposed model should be useful in urban watersheds because of its simplicity and its capacity to model common pollutants (e.g., biological oxygen demand, chemical oxygen demand, Escherichia coli, suspended solids, and total nitrogen and phosphorous) in runoff. The proposed model can also be used in design studies to determine how changes in infrastructure will affect the runoff and pollution loads.
机译:建立了一个城市径流模型,该模型能够计算第一次冲洗期间的径流,污染物负荷以及城市排水系统中水质成分的浓度。该模型被称为FFC-QUAL,是对现有ILLUDAS模型的修改,并添加到干旱和雨季的水质分析过程中使用。对于干燥期,使用排放系数和水质系数的规格。在降雨期间,我们使用克拉克和时区方法对透水区和不透水区进行径流分析,以考虑子流域形状的影响。此外,还使用了四种污染物累积方法和每次水质计算的冲洗方程。根据验证结果,FFC-QUAL提供的输出与Gunja子流域中三个降雨事件的峰值流量,总径流量,总负荷,峰值浓度和峰值浓度时间的测量数据大致相同。与ILLUDAS,SWMM和MOUSE模型相比,这些模型与本研究开发的模型之间几乎没有差异。拟议的模型应能在城市流域中使用,因为它简单易行,并且具有对径流中常见污染物(例如生物需氧量,化学需氧量,大肠杆菌,悬浮固体以及总氮和磷)进行建模的能力。提议的模型还可以用于设计研究中,以确定基础设施的变化将如何影响径流和污染负荷。

著录项

  • 来源
    《Journal of Environmental Management》 |2018年第1期|73-84|共12页
  • 作者单位

    Department of Water Resource, Isan Corporation., Ltd., 14066, Anyang, South Korea;

    Supervision Department, Dohwa Engineering Corporation., Ltd., 06178, Seoul, South Korea;

    Department of Civil Engineering, Bucheon University, 14635, Bucheon, South Korea;

    Department of Disaster Research, National Disaster Management Research Institute, 44538, Ulsan, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Washoff equation; Pollutants; Peak flow; Peak concentration;

    机译:冲刷方程;污染物;峰值流量峰值浓度;

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