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Model for Prioritizing Best Management Practice Implementation: Sediment Load Reduction

机译:最佳管理实践实施优先次序模型:减少泥沙负荷

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摘要

Understanding the best way to allocate limited resources is a constant challenge for water quality improvement efforts. The synoptic approach is a tool for geographic prioritization of these efforts. It uses a benefit-cost framework to calculate indices for functional criteria in subunits (watersheds, counties) of a region and then rank the subunits. The synoptic approach was specifically designed to incorporate best professional judgment in cases where information and resources are limited. To date, the synoptic approach has been applied primarily to local or regional wetland restoration prioritization projects. The goal of this work was to develop a synoptic model for prioritizing watersheds within which suites of agricultural best management practices (BMPs) can be implemented to reduce sediment load at the watershed outlets. The model ranks candidate watersheds within an ecoregion or river basin so that BMP implementation within the highest ranked watersheds will result in the most sediment load reduction per conservation dollar invested. The model can be applied anywhere and at many scales provided that the selected suite of BMPs is appropriate for the evaluation area’s biophysical and climatic conditions. The model was specifically developed as a tool for prioritizing BMP implementation efforts in ecoregions containing watersheds associated with the USDA-NRCS conservation effects assessment project (CEAP). This paper presents the testing of the model in the little river experimental watershed (LREW) which is located near Tifton, Georgia, USA and is the CEAP watershed representing the southeastern coastal plain. The application of the model to the LREW demonstrated that the model represents the physical drivers of erosion and sediment loading well. The application also showed that the model is quite responsive to social and economic drivers and is, therefore, best applied at a scale large enough to ensure differences in social and economic drivers across the candidate watersheds. The prioritization model will be used for planning purposes. Its results are visualized as maps which enable resource managers to identify watersheds within which BMP implementation would result in the most water quality improvement per conservation dollar invested.
机译:理解分配有限资源的最佳方法是改善水质的一项持续挑战。摘要方法是对这些工作进行地理优先排序的工具。它使用效益成本框架来计算区域中子单元(集水区,县)的功能标准的指数,然后对子单元进行排名。摘要方法专门设计用于在信息和资源有限的情况下结合最佳专业判断。迄今为止,概要方法已主要应用于本地或区域湿地恢复优先项目。这项工作的目的是开发一个用于划分流域优先顺序的天气模型,在其中可以实施一系列农业最佳管理实践(BMP),以减少流域出口处的泥沙负荷。该模型对一个生态区或流域内的候选集水区进行排名,以便在排名最高的集水区内实施BMP将导致每投资一美元的保护区减少的泥沙负荷最多。只要所选的BMP套件适合评估区域的生物物理和气候条件,该模型就可以在任何地方,在任何规模上应用。该模型是专门开发的一种工具,用于在包含USDA-NRCS保护效果评估项目(CEAP)相关流域的生态区域中优先实施BMP。本文介绍了该模型在小河实验流域(LREW)中的测试,该流域位于美国佐治亚州蒂夫顿附近,是代表东南沿海平原的CEAP流域。该模型在LREW上的应用表明,该模型很好地代表了侵蚀和沉积物加载的物理驱动力。该应用程序还表明,该模型对社会和经济驱动因素的响应非常好,因此,最好在足以确保候选流域内社会和经济驱动因素存在差异的规模下应用。优先级模型将用于计划目的。其结果以地图的形式可视化,使资源管理者能够识别出分水岭,实施BMP可以使每投资一美元的水质改善最大。

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