Identification of Potential Groundwater Recharge Sites in a Semi-arid Region of Pakistan Using Saaty’s Analytical Hierarchical Process (AHP)

Q3 Social Sciences
Muhammad Suliman, Samiullah Samiullah, Muhammad Ali
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引用次数: 7

Abstract

Groundwater is a precious source of fresh water and a major component of the entire water supply. Both water quality and quantity could be satisfied by evaluating the groundwater potential sites (GWPS). This paper analyzes the ground-water potentials in a semi-arid region of Khyber Pakhtunkhwa, Pakistan. It describes a standard methodology to identify and map GWPS using integrated Geographical Information System (GIS) and remote sensing (RS) methods. Eight parameters including elevation, slope, drainage density, lineaments density, soil, geology, land use/land cover and rainfall were integrated to explore areas with groundwater holding capability. GWPS were delineated through subjective weights assigned after coupling various thematic layers using Saaty’s Analytical Hierarchical Process (AHP). The modelled GWPS were cross-checked with tube wells data. The result indicates that the central part of the study area has good potential for groundwater reserves/exploitation, where the factors i.e. moderate to high drainage density, sedimentary sequence of alluvial plain, low elevation etc. discern the central portion of the study area as a suitable site for groundwater. This study suggests that the applied method proves to be very significant and reliable tool for timely assessment of quality assured evaluation of groundwater resources. This study could be a systematic guide for future investigations for water related explorations, especially in semi-arid environments.
利用Saaty的层次分析法(AHP)确定巴基斯坦半干旱区地下水潜在补给点
地下水是淡水的宝贵来源,也是整个供水的主要组成部分。通过对地下水潜力点(GWPS)的评价,可以同时满足水质和水量要求。本文分析了巴基斯坦开伯尔-普赫图赫瓦半干旱地区的地下水潜力。它描述了使用综合地理信息系统(GIS)和遥感(RS)方法识别和绘制GWPS的标准方法。综合了高程、坡度、排水密度、线理密度、土壤、地质、土地利用/土地覆盖和降雨量等八个参数,以探索具有地下水容纳能力的区域。GWPS是通过使用Saaty的层次分析法(AHP)耦合各个主题层后分配的主观权重来描绘的。建模的GWPS与管井数据进行了交叉检查。结果表明,研究区中部具有良好的地下水储量/开采潜力,其中中等至高排水密度、冲积平原沉积序列、低海拔等因素将研究区中部视为适合地下水开采的地点。该研究表明,该应用方法对于地下水资源质量保证评价的及时评估是非常重要和可靠的工具。这项研究可以为未来与水有关的勘探,特别是在半干旱环境中的勘探提供系统的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geomatics and Environmental Engineering
Geomatics and Environmental Engineering Earth and Planetary Sciences-Computers in Earth Sciences
CiteScore
2.30
自引率
0.00%
发文量
27
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