首页> 外文期刊>International Journal of Environmental Research and Public Health >Comparing the Selection and Placement of Best Management Practices in Improving Water Quality Using a Multiobjective Optimization and Targeting Method
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Comparing the Selection and Placement of Best Management Practices in Improving Water Quality Using a Multiobjective Optimization and Targeting Method

机译:使用多目标优化和目标确定方法比较改善水质的最佳管理实践的选择和位置

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Suites of Best Management Practices (BMPs) are usually selected to be economically and environmentally efficient in reducing nonpoint source (NPS) pollutants from agricultural areas in a watershed. The objective of this research was to compare the selection and placement of BMPs in a pasture-dominated watershed using multiobjective optimization and targeting methods. Two objective functions were used in the optimization process, which minimize pollutant losses and the BMP placement areas. The optimization tool was an integration of a multi-objective genetic algorithm (GA) and a watershed model (Soil and Water Assessment Tool—SWAT). For the targeting method, an optimum BMP option was implemented in critical areas in the watershed that contribute the greatest pollutant losses. A total of 171 BMP combinations, which consist of grazing management, vegetated filter strips (VFS), and poultry litter applications were considered. The results showed that the optimization is less effective when vegetated filter strips (VFS) are not considered, and it requires much longer computation times than the targeting method to search for optimum BMPs. Although the targeting method is effective in selecting and placing an optimum BMP, larger areas are needed for BMP implementation to achieve the same pollutant reductions as the optimization method.
机译:通常选择最佳管理实践(BMP)套件,以经济高效地减少流域农业地区的非点源(NPS)污染物。这项研究的目的是使用多目标优化和目标确定方法比较在牧场占主导的流域中BMP的选择和位置。在优化过程中使用了两个目标函数,它们将污染物损失和BMP放置区域最小化。优化工具是多目标遗传算法(GA)和分水岭模型(土壤和水评估工具-SWAT)的集成。对于确定目标的方法,在流域中影响最大污染物流失的关键区域实施了最佳BMP选项。总共考虑了171种BMP组合,包括放牧管理,植物滤纸(VFS)和家禽垫料应用。结果表明,当不考虑植物滤材(VFS)时,优化效果不佳,并且与针对最佳BMP的靶向方法相比,计算时间更长。尽管靶向方法在选择和放置最佳BMP方面有效,但是BMP实施需要更大的面积以实现与优化方法相同的污染物减排。

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