首页> 外文期刊>Hydrogeology journal >Site selection for managed aquifer recharge using fuzzy rules: Integrating geographical information system (GIS) tools and multi-criteria decision making [Sélection de site pour la recharge contr?lée d'aquifère en utilisant des règles multiples diverses: Intégration de systèmes d'infirmation géographique (SIG) et de prise de décision conditionnelle]
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Site selection for managed aquifer recharge using fuzzy rules: Integrating geographical information system (GIS) tools and multi-criteria decision making [Sélection de site pour la recharge contr?lée d'aquifère en utilisant des règles multiples diverses: Intégration de systèmes d'infirmation géographique (SIG) et de prise de décision conditionnelle]

机译:使用模糊规则的受控含水层补给的站点选择:集成地理信息系统(GIS)工具和多准则决策[使用多种规则的受控含水层补给的站点选择:确认系统的集成地理(GIS)和有条件的决策]

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摘要

One of the most important water-resources management strategies for arid lands is managed aquifer recharge (MAR). In establishing a MAR scheme, site selection is the prime prerequisite that can be assisted by geographic information system (GIS) tools. One of the most important uncertainties in the site-selection process using GIS is finite ranges or intervals resulting from data classification. In order to reduce these uncertainties, a novel method has been developed involving the integration of multi-criteria decision making (MCDM), GIS, and a fuzzy inference system (FIS). The Shemil-Ashkara plain in the Hormozgan Province of Iran was selected as the case study; slope, geology, groundwater depth, potential for runoff, land use, and groundwater electrical conductivity have been considered as site-selection factors. By defining fuzzy membership functions for the input layers and the output layer, and by constructing fuzzy rules, a FIS has been developed. Comparison of the results produced by the proposed method and the traditional simple additive weighted (SAW) method shows that the proposed method yields more precise results. In conclusion, fuzzy-set theory can be an effective method to overcome associated uncertainties in classification of geographic information data.
机译:干旱土地最重要的水资源管理策略之一是管理含水层补给(MAR)。在建立MAR方案中,选址是地理信息系统(GIS)工具可以协助的首要前提。使用GIS进行站点选择过程中最重要的不确定性之一是数据分类产生的有限范围或间隔。为了减少这些不确定性,已开发出一种新方法,其中涉及多准则决策(MCDM),GIS和模糊推理系统(FIS)的集成。案例研究选择了伊朗霍尔木兹甘省的Shemil-Ashkara平原。坡度,地质,地下水深度,径流潜力,土地利用和地下水电导率已被视为选址因素。通过为输入层和输出层定义模糊隶属度函数,并通过构造模糊规则,开发了FIS。将该方法与传统的简单加法加权(SAW)方法产生的结果进行比较,结果表明,该方法产生的结果更精确。总之,模糊集理论可以是克服地理信息数据分类中相关不确定性的有效方法。

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