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Using fuzzy logic analysis for siting decisions of infiltration trenches for highway runoff control

机译:用模糊逻辑分析法确定高速公路入渗沟的位置

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Determining optimal locations for best management practices (BMPs), including their field considerations and limitations, plays an important role for effective stormwater management. However, these issues have been often overlooked in modeling studies that focused on downstream water quality benefits. This study illustrates the methodology of locating infiltration trenches at suitable locations from spatial overlay analyses which combine multiple layers that address different aspects of field application into a composite map. Using seven thematic layers for each analysis, fuzzy logic was employed to develop a site suitability map for infiltration trenches, whereas the DRASTIC method was used to produce a groundwater vulnerability map on the island of Oahu, Hawaii, USA. In addition, the analytic hierarchy process (AHP), one of the most popular overlay analyses, was used for comparison to fuzzy logic. The results showed that the AHP and fuzzy logic methods developed significantly different index maps in terms of best locations and suitability scores. Specifically, the AHP method provided a maximum level of site suitability due to its inherent aggregation approach of all input layers in a linear equation. The most eligible areas in locating infiltration trenches were determined from the superposition of the site suitability and ground water vulnerability maps using the fuzzy AND operator. The resulting map successfully balanced qualification criteria for a low risk of groundwater contamination and the best BMP site selection. The results of the sensitivity analysis showed that the suitability scores were strongly affected by the algorithms embedded in fuzzy logic; therefore, caution is recommended with their use in overlay analysis. Accordingly, this study demonstrates that the fuzzy logic analysis can not only be used to improve spatial decision quality along with other overlay approaches, but also is combined with general water quality models for initial and refined searches for the best locations of BMPs at the sub-basin level.
机译:确定最佳管理实践(BMP)的最佳位置,包括其现场考虑因素和局限性,对于有效的雨水管理起着重要作用。但是,在侧重于下游水质益处的建模研究中,这些问题经常被忽略。这项研究说明了通过空间叠加分析将渗透沟槽定位在合适位置的方法,该方法将解决现场应用不同方面的多层结合到了一个合成图中。每次分析使用七个主题层,采用模糊逻辑为渗入沟渠制定场地适宜性图,而使用DRASTIC方法制作美国夏威夷瓦胡岛的地下水脆弱性图。此外,最流行的覆盖分析之一是层次分析法(AHP),用于与模糊逻辑进行比较。结果表明,AHP和模糊逻辑方法在最佳位置和适用性评分方面开发出明显不同的索引图。具体地说,由于AHP方法具有线性方程式中所有输入层的固有聚合方法,因此提供了最大程度的站点适用性。使用模糊AND运算符根据场地适用性和地下水易损性图的叠加确定最合适的入渗沟区域。生成的地图成功地平衡了低地下水污染风险和最佳BMP选址的资格标准。敏感性分析的结果表明,适用性评分受到模糊逻辑中嵌入算法的强烈影响;因此,建议在叠加分析中使用它们时要谨慎。因此,这项研究表明,模糊逻辑分析不仅可以与其他叠加方法一起用于改善空间决策质量,而且可以与一般水质模型相结合,用于对子区域BMP的最佳位置进行初始和精确搜索。盆地水平。

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