基于AHP/GIS的地下水可持续性指数研究

M. Sadek, K. Hagagg
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引用次数: 4

摘要

在水资源短缺和粮食短缺的背景下,人口逐渐过度增长,农业向沙漠扩张变得紧迫,这需要确保可持续的地下水资源。文献中已有大量的可持续性指标,但仍需努力将其发展为可测量的指标,以帮助判断地下水资源的可持续开发程度并指导更好的开发。本文介绍了一种新的地下水可持续性指标,该指标采用了广泛使用的多标准决策分析(MCDA)方法Saaty的层次分析法(AHP)。本研究选择了五个指标(水位变化、地下水可再生性、含水层饱和厚度、水质和脆弱性指数),这些指标考虑了资源的定量和定性维度,反映了经济和环境的可持续性以及社会福祉。根据所选准则和子准则对主目标的相对重要性赋予其权重和比率,并在成对矩阵中对权重和比率进行比较,计算特征值和一致性比以验证所选参数所赋予的权重和比率;对这些参数的范围进行了分类和评定,然后利用GIS和RS进行了重新分类,以便在试点地区应用可持续性指数。地下水样品的水化学和同位素分析的结果以及ElKhatatba试验区的库存数据的制图已用于该系统的水化学和水文地质特征,并用于编制已开发指数适用的现场专题层。ElKhatatba地区地下水资源的总体可持续性在中等到较差等级之间变化,中等到较差等级突出了持续监测和更好地管理地下水资源的必要性。最后,利用土地利用随时间的变化对该指标进行了验证
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Groundwater Sustainability Index using AHP/GIS Approach
In the context of water scarcity and food deficit while population progressively over-increasing, agricultural expansion into deserts become urgent, this requires sustainable groundwater resources to be secured. A wide range of sustainability indicators are available in literatures but efforts are still needed to develop them into measurable indexes that help to judge the extent to which the groundwater resources are developed sustainably and to direct toward better development This work introduces a novel groundwater sustainability index developed using the Saaty’s Analytic Hierarchy Process (AHP) which is a widely used MultiCriteria Decision Analysis (MCDA) method. Five indicators have been selected in this work (Change in Water level, Renewability of Groundwater, Aquifer Saturated Thickness , Water Quality and Vulnerability Indexes ), these consider both quantitative and qualitative dimensions of the resources and reflect the economic and environmental sustainability and social well-being. The selected criteria and sub criteria have been assigned weights and rates based on their relative importance to the main goal, the weights and rates were compared with each other in pair-wise matrixes , the eigen values and consistency ratio were calculated to validate the assigned weights and rates of the selected parameters ; the ranges of these parameters are classed and rated then reclassified with GIS and RS for application of the sustainability index in pilot area. The results of hydrochemical and isotopic analysis of groundwater samples as well as mapping of inventoried data form ElKhatatba pilot area have been used for hydrochemical and hydrogeological characterization of the system and for preparation the site thematic layers on which the developed indexapplied. The overall sustainability of groundwater resources in the ElKhatatba area vary between moderate to poor grades moderate to poor grades which highlights the necessity for continuous monitoring and better management of the groundwater resources. Finally, the proposed index was validated using the change in land use with time
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