基于遥感、GIS和AHP技术的沙比河流域硬岩区地下水潜力带综合评价

IF 3 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Physics and Chemistry of the Earth Pub Date : 2024-11-26 DOI:10.1016/j.pce.2024.103820
Sachin L. Suryawanshi , Pradeep Kumar Singh , Mahesh Kothari , Manjeet Singh , Kamal Kishore Yadav , Trilok Gupta
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引用次数: 0

摘要

对沙璧河流域硬岩区地下水潜力区进行了可持续发展评价。遥感(RS)和地理信息系统(GIS)已成为地下水资源检索、监测和保护的重要方法,并与层次分析法(AHP)一起用于划定gwpz。为了评估研究区全球升温潜能值,利用RS和常规数据制作了8个专题图:排水密度、地貌、地质、降雨、土地利用/土地覆盖、地形密度、坡度和土壤。应用层次分析法为每个专题地图及其子类分配权重。然后,利用ArcGIS 10.4的加权叠加分析手段对主题层进行叠加,对萨比盆地GWPZ地图进行评价。将沙比盆地的GWPZ划分为“极好”(0.01%)、“好”(24.72%)、“中等”(56.54%)、“差”(10.45%)和“极差”(8.28%)5个等级。利用地下水勘探图的一致性方案和R-studio软件的ROC曲线分析,对绘制的GWPZ图的精度进行了评价,表明GWPZ图的预测精度令人满意。本研究为规划和发展地下水补给提供了有价值的数据,并为在硬岩区和半干旱区划定潜在的人工补给点位置,从而规划和建造适当的结构来管理含水层补给,实现未来地下水的可持续管理。
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Assessment of groundwater potential zones for hard rock area of sabi river basin using an integrated approach of remote sensing, GIS and AHP techniques
The study was conducted to assess groundwater potential zones (GWPZs) for hard rock area of Sabi river basin for the sustainable development. Remote Sensing (RS) and Geographic Information System (GIS) have emerged as crucial methods in retrieval, monitoring and conserving groundwater resources were used along with Analytical Hierarchy Process (AHP) to demarcate the GWPZs. In order to assess GWP in the study area, eight thematic maps: drainage density, geomorphology, geology, rainfall, land use/land cover, lineament density, slope and soil were prepared using RS and conventional data. The AHP was applied to assign the weightages for each thematic map and its sub classes. Then, the thematic layers were overlaid using the weighted overlay analysis means of ArcGIS 10.4 to assess the GWPZ map of Sabi basin. The Sabi basin was categorized into five classes of GWPZ as very good (0.01%), good (24.72%), moderate (56.54%), poor (10.45%) and very poor (8.28%). The accuracy of produced GWPZ map was assessed with well yield data by agreement scheme using ground water prospects map and by using ROC curve analysis through R-studio software which indicates the satisfactory GWPZ map prediction accuracy. This study provides valuable database in planning and development of groundwater recharging and to delineate locations of potential artificial recharge sites in the hard rock regions and semi -arid areas so that appropriate structures could be planned and constructed to manage aquifer recharge for sustainable groundwater management in the future.
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来源期刊
Physics and Chemistry of the Earth
Physics and Chemistry of the Earth 地学-地球科学综合
CiteScore
5.40
自引率
2.70%
发文量
176
审稿时长
31.6 weeks
期刊介绍: Physics and Chemistry of the Earth is an international interdisciplinary journal for the rapid publication of collections of refereed communications in separate thematic issues, either stemming from scientific meetings, or, especially compiled for the occasion. There is no restriction on the length of articles published in the journal. Physics and Chemistry of the Earth incorporates the separate Parts A, B and C which existed until the end of 2001. Please note: the Editors are unable to consider submissions that are not invited or linked to a thematic issue. Please do not submit unsolicited papers. The journal covers the following subject areas: -Solid Earth and Geodesy: (geology, geochemistry, tectonophysics, seismology, volcanology, palaeomagnetism and rock magnetism, electromagnetism and potential fields, marine and environmental geosciences as well as geodesy). -Hydrology, Oceans and Atmosphere: (hydrology and water resources research, engineering and management, oceanography and oceanic chemistry, shelf, sea, lake and river sciences, meteorology and atmospheric sciences incl. chemistry as well as climatology and glaciology). -Solar-Terrestrial and Planetary Science: (solar, heliospheric and solar-planetary sciences, geology, geophysics and atmospheric sciences of planets, satellites and small bodies as well as cosmochemistry and exobiology).
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