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Assessing Critical Source Areas in Watersheds for Conservation Buffer Planning and Riparian Restoration

机译:评估流域中的关键水源区域,以进行保护缓冲区规划和河岸恢复

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摘要

A science-based geographic information system (GIS) approach is presented to target critical source areas in watersheds for conservation buffer placement. Critical source areas are the intersection of hydrologically sensitive areas and pollutant source areas in watersheds. Hydrologically sensitive areas are areas that actively generate runoff in the watershed and are derived using a modified topographic index approach based on variable source area hydrology. Pollutant source areas are the areas in watersheds that are actively and intensively used for such activities as agricultural production. The method is applied to the Neshanic River watershed in Hunterdon County, New Jersey. The capacity of the topographic index in predicting the spatial pattern of runoff generation and the runoff contribution to stream flow in the watershed is evaluated. A simple cost-effectiveness assessment is conducted to compare the conservation buffer placement scenario based on this GIS method to conventional riparian buffer scenarios for placing conservation buffers in agricultural lands in the watershed. The results show that the topographic index reasonably predicts the runoff generation in the watershed. The GIS-based conservation buffer scenario appears to be more cost-effective than the conventional riparian buffer scenarios.
机译:提出了一种基于科学的地理信息系统(GIS)方法,以流域中的关键源区域为目标,用于保护缓冲区的放置。关键源区是流域中水文敏感区和污染物源区的交集。水文敏感区是在流域内主动产生径流的区域,是使用基于可变源区域水文学的改良地形指数方法得出的。污染源地区是流域中活跃而集约地用于农业生产等活动的区域。该方法适用于新泽西州亨特登县的内山河河流域。评估了地形指数预测径流产生的空间格局的能力以及径流对流域中水流的贡献。进行了简单的成本效益评估,以将基于此GIS方法的保护缓冲区放置方案与用于在流域的农业土地中放置保护缓冲区的常规河岸缓冲区方案进行比较。结果表明,地形指数合理地预测了流域的径流产生。基于GIS的保护缓冲区方案似乎比传统的河岸缓冲区方案更具成本效益。

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