Integrated geophysical investigations of groundwater for sustainable management in Faisalabad region of Pakistan

IF 2.8 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Earth Sciences Pub Date : 2024-11-29 DOI:10.1007/s12665-024-11966-8
Umar Javed, John McMaine, Arfan Arshad, Sajjad Hussain, Shahbaz Muhammad, Muhammad Umar Akbar, Muhammad Awais, Rabeea Noor
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Abstract

As global and local populations surge and climate change continue to disrupt surface and groundwater reservoirs, the urgent need arises to explore additional groundwater sources. Ensuring sustainable management necessitates the efficient identification of high-potential zones to meet escalating water demands. This study aims to delineate groundwater potential zones in Faisalabad District, Pakistan, utilizing a cost-effective geoelectrical resistivity survey method. Apparent resistivity data was collected using the Schlumberger electrode configuration and analyzed with the Interpex “IX1D v2 model” to determine true soil layer resistivities and thicknesses with average root mean square error of 5.12%. The results have revealed that the Aquifer thickness ranged from 13.35 to 165.59 m, and resistivity from 23.96 to 1125.0 Ωm. Hydraulic conductivity, transmissivity, and porosity of aquifers varied from 0.49 to 24.11 m/day (average 8.214 m/day), 35.67 to 1593.98 m2/day (average 567.771 m2/day), and 22.29 to 39.82% (average 37.465%), respectively. Integration of resistivity and geo-hydraulic properties data identified vertical electrical sounding (VES) points 1, 3, 4, and 6 as highly suitable for large-scale freshwater extraction due to having high groundwater potential repositories (coarse sand and gravel formations). Other points had varying suitability: VES points 7 and 8 for shallow wells only, VES points 5, 9, and 10 not recommended due to hard formations, and VES point 2 due to poor groundwater quality. This integrated approach has proven effective in assessing groundwater strata to support Sustainable Development Goal (SDG-3), making it applicable to other geographic locations and informing policy decisions for effective groundwater management.

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巴基斯坦费萨拉巴德地区地下水综合地球物理调查,促进可持续管理
随着全球和当地人口激增以及气候变化不断破坏地表水和地下水库,迫切需要开发更多的地下水源。要确保可持续管理,就必须有效识别高潜力区,以满足不断增长的用水需求。本研究旨在利用经济有效的地质电阻率勘测方法,划定巴基斯坦费萨拉巴德地区的地下水潜力区。使用 Schlumberger 电极配置收集表观电阻率数据,并使用 Interpex "IX1D v2 模型 "进行分析,以确定真实的土层电阻率和厚度,平均均方根误差为 5.12%。结果显示,含水层厚度在 13.35 至 165.59 米之间,电阻率在 23.96 至 1125.0 Ωm 之间。含水层的水力传导率、透射率和孔隙度分别为 0.49 至 24.11 米/天(平均 8.214 米/天)、35.67 至 1593.98 平方米/天(平均 567.771 平方米/天)和 22.29 至 39.82%(平均 37.465%)。综合电阻率和地质水文特性数据,确定 1、3、4 和 6 号垂直电测点因具有高地下水潜能储量(粗砂和砾石层)而非常适合大规模开采淡水。其他各点的适宜性各不相同:VES 点 7 和 8 只适合打浅井,VES 点 5、9 和 10 因地层坚硬而不建议打井,VES 点 2 则因地下水水质较差而不建议打井。事实证明,这种综合方法可有效评估地下水层,支持可持续发展目标(SDG-3),使其适用于其他地理位置,并为有效管理地下水的决策提供信息。
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来源期刊
Environmental Earth Sciences
Environmental Earth Sciences 环境科学-地球科学综合
CiteScore
5.10
自引率
3.60%
发文量
494
审稿时长
8.3 months
期刊介绍: Environmental Earth Sciences is an international multidisciplinary journal concerned with all aspects of interaction between humans, natural resources, ecosystems, special climates or unique geographic zones, and the earth: Water and soil contamination caused by waste management and disposal practices Environmental problems associated with transportation by land, air, or water Geological processes that may impact biosystems or humans Man-made or naturally occurring geological or hydrological hazards Environmental problems associated with the recovery of materials from the earth Environmental problems caused by extraction of minerals, coal, and ores, as well as oil and gas, water and alternative energy sources Environmental impacts of exploration and recultivation – Environmental impacts of hazardous materials Management of environmental data and information in data banks and information systems Dissemination of knowledge on techniques, methods, approaches and experiences to improve and remediate the environment In pursuit of these topics, the geoscientific disciplines are invited to contribute their knowledge and experience. Major disciplines include: hydrogeology, hydrochemistry, geochemistry, geophysics, engineering geology, remediation science, natural resources management, environmental climatology and biota, environmental geography, soil science and geomicrobiology.
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