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A Stream Network Model for Integrated Watershed Modeling

机译:流域综合流模型的网络模型

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摘要

We describe a flexible, computationally efficient stream network model, which forms the core of a simulation framework that spatially integrates the contributions from point and nonpoint sources in a watershed. The model uses the map and stream topology information in the US Environmental Protection Agency's Reach File 3 to generate a spatially explicit network of stream reaches. Water and materials are routed through the stream network to the watershed outlet, and the routing process accounts for transit times and for possible nutrient losses in streams. This model can be applied wherever Reach File maps or maps from the newer National Hydrography Dataset are available, and it can be combined with models of other watershed processes to create a complete watershed simulation system. We present an application of the stream network model to two watersheds of different sizes in the Patuxent River watershed of Maryland, USA. Simulated predictions of streamflow and nitrate concentrations are either very good or good according to standards developed for evaluating the widely used Hydrologic Simulation Program - Fortran (HSPF) watershed model.
机译:我们描述了一种灵活的,计算效率高的流网络模型,该模型构成了模拟框架的核心,该模型在空间上集成了分水岭中点和非点源的贡献。该模型使用美国环境保护署的“到达文件” 3中的地图和河流拓扑信息来生成空间明确的河流范围网络。水和物料通过河流网络被路由到集水区出口,路由过程考虑了运输时间和河流中可能的养分流失。只要有“到达文件”地图或来自较新国家水文数据集的地图,该模型就可以应用,并且可以与其他分水岭过程的模型结合使用,以创建完整的分水岭模拟系统。我们介绍了流网络模型在美国马里兰州Patuxent河分水岭的两个大小不同的分水岭的应用。根据为评估广泛使用的水文模拟程序-Fortran(HSPF)分水岭模型而开发的标准,对流量和硝酸盐浓度的模拟预测要么很好,要么很好。

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