Multi-criteria decision process to identify groundwater potential zones using geospatial tools in the Arghandab river basin, Afghanistan

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作者
Asadullah Farahmand
Mohammad Salem Hussaini
Hussain Ali Jawadi
Manuel Abrunhosa
Brian F. Thomas
机构
[1] Ministry of Energy and Water,Department of Hydrogeology
[2] Portuguese Chapter of the International Association of Hydrogeologists (AIH-GP),Department of Engineering Geology and Hydrogeology
[3] University of Algarve,Department of Geology, Faculty of Geosciences
[4] Kabul Polytechnic University,School of Engineering
[5] Bamyan University,undefined
[6] Center for Earth and Space Research of the University of Coimbra,undefined
[7] Portugal (CITEUC),undefined
[8] Newcastle University,undefined
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关键词
Groundwater; Remote sensing; GIS; Multi-criteria decision analysis; Arghandab river basin;
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摘要
This study used remote sensing (RS) and geographic information system (GIS) techniques to assess groundwater potential areas by applying two multi-criteria decision-making analyses tools in the Arghandab river basin. Twelve influencing parameters summarizing basin characteristics were gathered and generated using geospatial RS and GIS tools. The analytical hierarchy process (AHP) and analytical network process (ANP) were examined to weigh, ranking, and reclassify raster to produce groundwater potential maps. Two multi-criteria decision models were applied to compare results and suitability in the study area. The results of the AHP analysis delineate five groundwater potential zones (GWPZs) classified as very poor (29%), poor (22%), moderate (17%), high (19%), and very high (14%). On the other hand, the results of the ANP analysis classified GWPZs as very poor (25%), poor (9%), moderate (25%), high (30%), and very high (11%). To validate generated GWPZs maps, a total of 270 well locations data were utilized in the receiver operating characteristic (ROC) curve analysis. ROC model accuracy in training and validation stages is marginally higher for the ANP model (0.810 and 0.823) as compared to the AHP model (0.749 and 0.742). The groundwater potential map delineated in this study offers a preliminary assessment to scientists, public authorities, and policy makers for sustainable management of groundwater resources in the study area.
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