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Modeling diffuse pollution with a distributed approach

机译:使用分布式方法对扩散污染进行建模

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The transferability of parameters for non-point source pollution models to other watersheds, especially those in remote areas without enough data for calibration, is a major problem in diffuse pollution modeling. A water quality component was developed for WATFLOOD (a flood forecast hydrological model) to deal with sediment and nutrient transport. The model uses a distributed group response unit approach for water quantity and quality modeling. Runoff, sediment yield and soluble nutrient concentrations are calculated separately for each land cover class, weighted by area and then routed downstream. The distributed approach for the water quality model for diffuse pollution in agricultural watersheds is described in this paper. Integrating the model with data extracted using GIS technology (Geographical Information Systems) for a local watershed, the model is calibrated for the hydrologic response and validated for the water quality component. With the connection to GIS and the group response unit approach used in this paper, model portability increases substantially, which will improve non-point source modeling at the watershed scale level. [References: 17]
机译:非点源污染模型的参数到其他流域的可传递性,尤其是在没有足够数据可校准的偏远地区,是扩散污染建模中的一个主要问题。为WATFLOOD(洪水预报水文模型)开发了水质成分,以处理沉积物和养分的输送。该模型使用分布式组响应单元方法进行水量和水质建模。对于每种土地覆盖类别,分别计算径流量,沉积物产量和可溶性养分浓度,然后按面积加权,然后路由到下游。本文介绍了农业流域弥漫性污染水质模型的分布式方法。将模型与使用GIS技术(地理信息系统)针对本地流域提取的数据集成在一起,针对水文响应对模型进行校准,并对水质成分进行验证。通过与GIS的连接以及本文使用的组响应单元方法,模型的可移植性大大提高,这将改善分水岭规模级别的非点源建模。 [参考:17]

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