Enhancing water security through site selection of water harvesting structures in semi-arid regions: a GIS-based multiple criteria decision analysis

Anant Patel, Nirali Chaudhari
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Abstract

Abstract This research endeavors to develop a decision support tool aimed at ascertaining the optimal site selection for water harvesting structures in semi-arid regions, employing a geographic information system-based multiple criteria decision analysis approach. Water scarcity poses a formidable challenge in various countries, particularly in arid and semi-arid areas. Among the potential solutions, the adoption of water harvesting technologies stands out for capturing and storing rainwater to address water shortages. However, the effectiveness and efficiency of these structures hinge significantly on their precise placement. To address this issue, this paper introduces a comprehensive framework that integrates multiple criteria, encompassing rainfall intensity, land slope, soil type, and land use, to discern the most suitable locations for water harvesting structures. A practical application of the proposed methodology is demonstrated through a case study conducted in the Sabarmati river basin. The results demonstrate the effectiveness of the approach in identifying highly suitable locations for water harvesting structures, ultimately contributing to the enhancement of water security in the region.
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半干旱区集水设施选址提高水安全:基于gis的多准则决策分析
摘要本研究采用基于地理信息系统的多准则决策分析方法,开发半干旱区集水设施最优选址的决策支持工具。缺水在许多国家,特别是在干旱和半干旱地区,构成了一个巨大的挑战。在潜在的解决方案中,采用集水技术可以捕获和储存雨水,以解决水资源短缺问题。然而,这些结构的有效性和效率在很大程度上取决于它们的精确放置。为了解决这一问题,本文引入了一个综合框架,该框架集成了多个标准,包括降雨强度、土地坡度、土壤类型和土地利用,以确定最适合集水结构的位置。通过在萨巴尔马蒂河流域进行的案例研究,证明了所提出方法的实际应用。结果表明,该方法在确定高度合适的集水结构位置方面是有效的,最终有助于增强该地区的水安全。
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