Skip to main content
Top
Published in: Hydrogeology Journal 7/2019

17-08-2019 | Paper

Review: Advances in groundwater potential mapping

Authors: S. Díaz-Alcaide, P. Martínez-Santos

Published in: Hydrogeology Journal | Issue 7/2019

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Groundwater resources can be expected to be increasingly relied upon in the near future, as a consequence of rapid population growth and global environmental change. Cost-effective and efficient techniques for groundwater exploration are gaining recognition as tools to underpin hydrogeological surveys in mid- and low-income regions. This paper provides a state of the art on groundwater potential mapping, an explorative technique based on remote sensing and geographical databases that has experienced major developments in recent years. A systematic review of over 200 directly relevant papers is presented. Twenty variables were found to be frequently involved in groundwater potential investigations, of which eight are almost always present: geology, lineaments, landforms, soil, land use/land cover, rainfall, drainage density, and slope. The more innovative approaches draw from satellite images to develop indicators related to vegetation, evapotranspiration, soil moisture and thermal anomalies, among others. Data integration is carried out either through expert judgement or through machine-learning techniques, the latter being less common. Three main conclusions were reached: (1) for optimal results, groundwater mapping must be used as a tool to complement field work, rather than a low-cost substitute; (2) the potential of remote-sensing techniques in groundwater exploration is enormous, particularly when the power of machine learning is harnessed by involving human judgement; (3) quality assurance remains the main challenge ahead, as exemplified by the fact that a majority of the existing studies in the literature lack adequate validation.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Abdalla F (2012) Mapping of groundwater prospective zones using remote sensing and GIS techniques: a case study from the central Eastern Desert, Egypt. J Afr Earth Sci 70:8–17CrossRef Abdalla F (2012) Mapping of groundwater prospective zones using remote sensing and GIS techniques: a case study from the central Eastern Desert, Egypt. J Afr Earth Sci 70:8–17CrossRef
go back to reference Abrams W, Ghoneim E, Shew R, LaMaskin T, Al-Bloushi K, Hussein S, AbuBakr M, Al-Mulla E, Al-Awar M, El-Baz F (2018) Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with simple additive weight (SAW), analytical hierarchy process (AHP), and probabilistic frequency ratio (PFR) techniques. J Arid Environ. https://doi.org/10.1016/j.jaridenv.2018.05.005 Abrams W, Ghoneim E, Shew R, LaMaskin T, Al-Bloushi K, Hussein S, AbuBakr M, Al-Mulla E, Al-Awar M, El-Baz F (2018) Delineation of groundwater potential (GWP) in the northern United Arab Emirates and Oman using geospatial technologies in conjunction with simple additive weight (SAW), analytical hierarchy process (AHP), and probabilistic frequency ratio (PFR) techniques. J Arid Environ. https://​doi.​org/​10.​1016/​j.​jaridenv.​2018.​05.​005
go back to reference Agarwal E, Agarwal R, Garg RD, Garg PK (2013) Delineation of groundwater potential zone: an AHP/ANP approach. J Earth Syst Sci 122(3):887–898CrossRef Agarwal E, Agarwal R, Garg RD, Garg PK (2013) Delineation of groundwater potential zone: an AHP/ANP approach. J Earth Syst Sci 122(3):887–898CrossRef
go back to reference Ahmed R, Sajjad H (2018) Analyzing factors of groundwater potential and its relation with population in the lower Barpani watershed, Assam, India. Nat Resour Res 27(4):503–515CrossRef Ahmed R, Sajjad H (2018) Analyzing factors of groundwater potential and its relation with population in the lower Barpani watershed, Assam, India. Nat Resour Res 27(4):503–515CrossRef
go back to reference Akinlalu AA, Adegbuyiro A, Adiat KAN, Akeredolu BE, Lateef WY (2017) Application of multi-criteria decision analysis in prediction of groundwater resources potential: a case of Oke-Ana, Ilesa area southwestern, Nigeria. NRIAG J Astron Geophys 6:184–200CrossRef Akinlalu AA, Adegbuyiro A, Adiat KAN, Akeredolu BE, Lateef WY (2017) Application of multi-criteria decision analysis in prediction of groundwater resources potential: a case of Oke-Ana, Ilesa area southwestern, Nigeria. NRIAG J Astron Geophys 6:184–200CrossRef
go back to reference Al Saud M (2010) Mapping potential areas for groundwater storage in Wadi Aurnah Basin, western Arabian peninsula, using remote sensing and geographic information system techniques. Hydrogeol J 18:1481–1495 Al Saud M (2010) Mapping potential areas for groundwater storage in Wadi Aurnah Basin, western Arabian peninsula, using remote sensing and geographic information system techniques. Hydrogeol J 18:1481–1495
go back to reference Al Shaheeb AA, Al-Adamat R, Al-Fugara A, Al-Amoush H, AlAyyash S (2018) Delineating groundwater potential zones within the Azraq Basin of central Jordan using multi-criteria GIS analysis. Groundw Sustain Devel 7:82–90CrossRef Al Shaheeb AA, Al-Adamat R, Al-Fugara A, Al-Amoush H, AlAyyash S (2018) Delineating groundwater potential zones within the Azraq Basin of central Jordan using multi-criteria GIS analysis. Groundw Sustain Devel 7:82–90CrossRef
go back to reference Ali H, Priju CP, Prasad NBN (2015) Delineation of groundwater potential zones in deep Midland aquifers along Bharathapuzha River basin, Kerala using geophysical methods. Aquatic Procedia 4:1039–1046CrossRef Ali H, Priju CP, Prasad NBN (2015) Delineation of groundwater potential zones in deep Midland aquifers along Bharathapuzha River basin, Kerala using geophysical methods. Aquatic Procedia 4:1039–1046CrossRef
go back to reference An Y, Wang Y, Zhang H, Wu X (2012) GIS-based suitability assessment for shallow groundwater development in Zhangye Basin. Procedia Environ Sci 12:1397–1403CrossRef An Y, Wang Y, Zhang H, Wu X (2012) GIS-based suitability assessment for shallow groundwater development in Zhangye Basin. Procedia Environ Sci 12:1397–1403CrossRef
go back to reference Assatse WT, Nouck PN, Tabod CT, Akame JM, Biringanine GN (2016) Hydrogeological activity of lineaments in Yaounde Cameroon region using remote sensing and GIS techniques. Egypt J Remote Sens Space Sci 19:49–60 Assatse WT, Nouck PN, Tabod CT, Akame JM, Biringanine GN (2016) Hydrogeological activity of lineaments in Yaounde Cameroon region using remote sensing and GIS techniques. Egypt J Remote Sens Space Sci 19:49–60
go back to reference Aydav PSS, Mizn S (2015) Modified self-learning with clustering for the classification of remote sensing images. Proced Comput Sci 58:97–104CrossRef Aydav PSS, Mizn S (2015) Modified self-learning with clustering for the classification of remote sensing images. Proced Comput Sci 58:97–104CrossRef
go back to reference Balamurugan G, Seshan K, Bera S (2017) Frequency ratio model for groundwater potential mapping and its sustainable management in cold desert, India. J King Saud Univ Sci 29:333–347CrossRef Balamurugan G, Seshan K, Bera S (2017) Frequency ratio model for groundwater potential mapping and its sustainable management in cold desert, India. J King Saud Univ Sci 29:333–347CrossRef
go back to reference Bannari A, Morin D, Bonn F, Huete A (1995) A review of vegetation indices. Remote Sens Rev 13(1):95–120CrossRef Bannari A, Morin D, Bonn F, Huete A (1995) A review of vegetation indices. Remote Sens Rev 13(1):95–120CrossRef
go back to reference Barsi JA, Lee K, Kvaran G, Markham BL, Pedelty JA (2014) The spectral response of the Landsat-8 operational land imager. Remote Sens 6:10232–10251CrossRef Barsi JA, Lee K, Kvaran G, Markham BL, Pedelty JA (2014) The spectral response of the Landsat-8 operational land imager. Remote Sens 6:10232–10251CrossRef
go back to reference Bashe BB (2017) Groundwater potential mapping using remote sensing and GIS in Rift Valley Lakes Basin, Weito Sub Basin, Ethiopia. Int J Sci Eng Res 8(2):43–51 Bashe BB (2017) Groundwater potential mapping using remote sensing and GIS in Rift Valley Lakes Basin, Weito Sub Basin, Ethiopia. Int J Sci Eng Res 8(2):43–51
go back to reference Bishop C (2018) Geological remote sensing. Int J Appl Earth Obs Geoinf 64:267–274CrossRef Bishop C (2018) Geological remote sensing. Int J Appl Earth Obs Geoinf 64:267–274CrossRef
go back to reference Bruning JN, Gierke JS, Maclean AL (2011) An approach to lineament analysis for groundwater exploration in Nicaragua. Photogramm Eng Remote Sens 77(5):509–519CrossRef Bruning JN, Gierke JS, Maclean AL (2011) An approach to lineament analysis for groundwater exploration in Nicaragua. Photogramm Eng Remote Sens 77(5):509–519CrossRef
go back to reference Burton-Johnson A, Black M, Fretwell PT, Kaluza-Gilbert J (2016) An automated methodology for differentiating rock from snow, clouds and sea in Antarctica from Landsat 8 imagery: a new rock outcrop map and area estimation for the entire Antarctic continent. Cryosphere 10:1665–1677CrossRef Burton-Johnson A, Black M, Fretwell PT, Kaluza-Gilbert J (2016) An automated methodology for differentiating rock from snow, clouds and sea in Antarctica from Landsat 8 imagery: a new rock outcrop map and area estimation for the entire Antarctic continent. Cryosphere 10:1665–1677CrossRef
go back to reference Chaudhary BS, Kumar S (2017) Identification of groundwater potential zones using remote sensing and GIS of K-J watershed, India. J Geol Soc India 91(2018):717–721 Chaudhary BS, Kumar S (2017) Identification of groundwater potential zones using remote sensing and GIS of K-J watershed, India. J Geol Soc India 91(2018):717–721
go back to reference Chen W, Li H, Houa E, Wang S, Wang G, Panahi M, Li T, Peng T, Guo C, Niua C, Xiao L, Wang J, Xie X, Ahmad BB (2018) GIS-based groundwater potential analysis using novel ensemble weights-of-evidence with logistic regression and functional tree models. Sci Total Environ 634:853–867CrossRef Chen W, Li H, Houa E, Wang S, Wang G, Panahi M, Li T, Peng T, Guo C, Niua C, Xiao L, Wang J, Xie X, Ahmad BB (2018) GIS-based groundwater potential analysis using novel ensemble weights-of-evidence with logistic regression and functional tree models. Sci Total Environ 634:853–867CrossRef
go back to reference Chilton PJ, Foster SSD (1995) Hydrogeological characterisation and water-supply potential of basement aquifers in tropical Africa. Hydrogeol J 3(1):36–49CrossRef Chilton PJ, Foster SSD (1995) Hydrogeological characterisation and water-supply potential of basement aquifers in tropical Africa. Hydrogeol J 3(1):36–49CrossRef
go back to reference Crossman J, Bradley C, David JNW, Milner AM (2012) Use of remote sensing to identify areas of groundwater upwelling on active glacial floodplains: their frequency, extent and significance on a landscape scale. Remote Sens Environ 123:116–126CrossRef Crossman J, Bradley C, David JNW, Milner AM (2012) Use of remote sensing to identify areas of groundwater upwelling on active glacial floodplains: their frequency, extent and significance on a landscape scale. Remote Sens Environ 123:116–126CrossRef
go back to reference Dailey D, Sauck W, Sultan M, Milewski A, Ahmed M, Laton WR, Elkadiri R, Foster J, Schmidt C, Al Harbi T (2015) Geophysical, remote sensing, GIS, and isotopic applications for a better understanding of the structural controls on groundwater flow in the Mojave Desert. Cal J Hydrol Regional Studies 3:211–232CrossRef Dailey D, Sauck W, Sultan M, Milewski A, Ahmed M, Laton WR, Elkadiri R, Foster J, Schmidt C, Al Harbi T (2015) Geophysical, remote sensing, GIS, and isotopic applications for a better understanding of the structural controls on groundwater flow in the Mojave Desert. Cal J Hydrol Regional Studies 3:211–232CrossRef
go back to reference Dar IA, Sankar K, Dar MA (2010) Remote sensing technology and geographic information system modeling: An integrated approach towards the mapping of groundwater potential zones in hardrock terrain, Mamundiyar basin. J Hydrol 394:285–295CrossRef Dar IA, Sankar K, Dar MA (2010) Remote sensing technology and geographic information system modeling: An integrated approach towards the mapping of groundwater potential zones in hardrock terrain, Mamundiyar basin. J Hydrol 394:285–295CrossRef
go back to reference Das S, Gupta A, Ghosh S (2017) Exploring groundwater potential zones using MIF technique in semi-arid region: a case study of Hingoli district, Maharashtra. Spat Inf Res 25(6):749–756CrossRef Das S, Gupta A, Ghosh S (2017) Exploring groundwater potential zones using MIF technique in semi-arid region: a case study of Hingoli district, Maharashtra. Spat Inf Res 25(6):749–756CrossRef
go back to reference DEP (1993) Carte hydrogeologique du Burkina Faso [Hydrogeological map of Burkina Faso]. Direction des Etudes de la Planification, Ministère de l’Eau, Ouagadougou, Burkina Faso, 45 pp DEP (1993) Carte hydrogeologique du Burkina Faso [Hydrogeological map of Burkina Faso]. Direction des Etudes de la Planification, Ministère de l’Eau, Ouagadougou, Burkina Faso, 45 pp
go back to reference DGEP (2016) Inventaire nationale des ouvrages [National inventory of public works]. Direction Générale de l’Eau Potable, Ouagadougou, Burkina Faso, 440 pp DGEP (2016) Inventaire nationale des ouvrages [National inventory of public works]. Direction Générale de l’Eau Potable, Ouagadougou, Burkina Faso, 440 pp
go back to reference Dinesan VP, Gopinath G, Ashitha MK (2015) Application of geoinformatics for the delineation of groundwater prospect zones: a case study for Melattur Grama panchayat in Kerala, India. Aquatic Proced 4(105):1389–1396CrossRef Dinesan VP, Gopinath G, Ashitha MK (2015) Application of geoinformatics for the delineation of groundwater prospect zones: a case study for Melattur Grama panchayat in Kerala, India. Aquatic Proced 4(105):1389–1396CrossRef
go back to reference DNH (2010) Données Hydrogeologiques et des Forages [Hydrogeological data and drilling]. Direction Nationale de l’Hydraulique, Ministère de l’Environnement, de l’Eau et de l’Assainissement, Bamako, Mali DNH (2010) Données Hydrogeologiques et des Forages [Hydrogeological data and drilling]. Direction Nationale de l’Hydraulique, Ministère de l’Environnement, de l’Eau et de l’Assainissement, Bamako, Mali
go back to reference Ducart DF, Moreira-Silva A, Toledo CLB, Mozer de Assis L (2016) Mapping iron oxides with Landsat-8/OLI and EO-1/Hyperion imagery from the Serra Norte iron deposits in the Carajás Mineral Province, Brazil. Brazilian J Geol 46(3):331–349CrossRef Ducart DF, Moreira-Silva A, Toledo CLB, Mozer de Assis L (2016) Mapping iron oxides with Landsat-8/OLI and EO-1/Hyperion imagery from the Serra Norte iron deposits in the Carajás Mineral Province, Brazil. Brazilian J Geol 46(3):331–349CrossRef
go back to reference Elbeih SF (2015) An overview of integrated remote sensing and GIS for groundwater mapping in Egypt. Ain Shams Eng J 6:1–15CrossRef Elbeih SF (2015) An overview of integrated remote sensing and GIS for groundwater mapping in Egypt. Ain Shams Eng J 6:1–15CrossRef
go back to reference Elhag M (2017) Consideration of Landsat-8 spectral band combination in typical Mediterranean Forest classification in Halkidiki, Greece. Open Geosci 9:468–479CrossRef Elhag M (2017) Consideration of Landsat-8 spectral band combination in typical Mediterranean Forest classification in Halkidiki, Greece. Open Geosci 9:468–479CrossRef
go back to reference Feng W, Zhong M, Lemoine JM, Biancale R, Hsu HT, Xia J (2013) Evaluation of groundwater depletion in North China using the gravity recovery and climate experiment (GRACE) data and ground-based measurements. Water Resour Res 49(4):2110–2118CrossRef Feng W, Zhong M, Lemoine JM, Biancale R, Hsu HT, Xia J (2013) Evaluation of groundwater depletion in North China using the gravity recovery and climate experiment (GRACE) data and ground-based measurements. Water Resour Res 49(4):2110–2118CrossRef
go back to reference Fetter CW (1993) Contaminant hydrogeology. Macmillan, New York Fetter CW (1993) Contaminant hydrogeology. Macmillan, New York
go back to reference Freeze RA, Cherry JA (1979) Groundwater. Prentice-Hall, Englewood Cliffs, NJ, 604 pp Freeze RA, Cherry JA (1979) Groundwater. Prentice-Hall, Englewood Cliffs, NJ, 604 pp
go back to reference Gabriel BO, Olusola OM, Omowonuola AF, Lawrence AO (2014) A preliminary assessment of the groundwater potential of Ekiti state, southwestern Nigeria, using terrain and satellite imagery analyses. J Environ Earth Sci 4(18):33–43 Gabriel BO, Olusola OM, Omowonuola AF, Lawrence AO (2014) A preliminary assessment of the groundwater potential of Ekiti state, southwestern Nigeria, using terrain and satellite imagery analyses. J Environ Earth Sci 4(18):33–43
go back to reference García-Rodríguez M, Antón L, Martínez-Santos P (2014) Estimating groundwater resources in remote desert environments by coupling geographic information systems with groundwater modeling (Erg Chebbi, Morocco). J Arid Environ 110:19–29CrossRef García-Rodríguez M, Antón L, Martínez-Santos P (2014) Estimating groundwater resources in remote desert environments by coupling geographic information systems with groundwater modeling (Erg Chebbi, Morocco). J Arid Environ 110:19–29CrossRef
go back to reference Ghodratabadi S, Feizi F (2015) Identification of groundwater potential zones in Moalleman, Iran by remote sensing and index overlay technique in GIS. Iranian J Earth Sci 7:142–152 Ghodratabadi S, Feizi F (2015) Identification of groundwater potential zones in Moalleman, Iran by remote sensing and index overlay technique in GIS. Iranian J Earth Sci 7:142–152
go back to reference Gokool S, Riddell ES, Swemmer A, Nippert JB, Raubenheimer R, Chetty KT (2018) Estimating groundwater contribution to transpiration using satellite-derived evapotranspiration estimates coupled with stable isotope analysis. J Arid Environ 152:45–54CrossRef Gokool S, Riddell ES, Swemmer A, Nippert JB, Raubenheimer R, Chetty KT (2018) Estimating groundwater contribution to transpiration using satellite-derived evapotranspiration estimates coupled with stable isotope analysis. J Arid Environ 152:45–54CrossRef
go back to reference Govindaraj V, Karthick P, Lakshumanan C (2017) Assessment of groundwater potential zones using remote sensing and GIS techniques in Gomukhi River basin of Tamilnadu, India. Int Res J Earth Sci (11):1–12 Govindaraj V, Karthick P, Lakshumanan C (2017) Assessment of groundwater potential zones using remote sensing and GIS techniques in Gomukhi River basin of Tamilnadu, India. Int Res J Earth Sci (11):1–12
go back to reference Hadzic E, Lazovic N, Mulaomerovic-Seta A (2015) The importance of groundwater vulnerability maps in the protection of groundwater sources: key study—Sarajevsko Polje. Procedia Environ Sci 25:104–111CrossRef Hadzic E, Lazovic N, Mulaomerovic-Seta A (2015) The importance of groundwater vulnerability maps in the protection of groundwater sources: key study—Sarajevsko Polje. Procedia Environ Sci 25:104–111CrossRef
go back to reference Han T, Nelson J (2015) Mapping hydrothermally altered rocks with Landsat 8 imagery: a case study in the KSM and Snowfi eld zones, northwestern British Columbia. In: Geological Fieldwork 2014, British Columbia Geological Survey Paper 2015-1:103-112 Han T, Nelson J (2015) Mapping hydrothermally altered rocks with Landsat 8 imagery: a case study in the KSM and Snowfi eld zones, northwestern British Columbia. In: Geological Fieldwork 2014, British Columbia Geological Survey Paper 2015-1:103-112
go back to reference Hastie T, Tibshirani R, Friedman J (2009) The elements of statistical learning: data mining, inference and prediction. Springer, New York, 745 ppCrossRef Hastie T, Tibshirani R, Friedman J (2009) The elements of statistical learning: data mining, inference and prediction. Springer, New York, 745 ppCrossRef
go back to reference Helaly AS (2017) Assessment of groundwater potentiality using geophysical techniques in Wadi Allaqi basin, Eastern Desert, Egypt: case study. NRIAG J Astron Geophys 6:408–421CrossRef Helaly AS (2017) Assessment of groundwater potentiality using geophysical techniques in Wadi Allaqi basin, Eastern Desert, Egypt: case study. NRIAG J Astron Geophys 6:408–421CrossRef
go back to reference Hernández-Espriú A, Reyna-Gutiérrez JA, Sánchez-León E, Cabral-Cano E, Carrera-Hernández J, Martínez-Santos P, Falorni G, Colombo D (2014) DRASTIC-Sg model, a new extension to the DRASTIC approach for mapping groundwater vulnerability in aquifers subject to differential land subsidence: application to Mexico City. Hydrogeol J 22(6):1–17CrossRef Hernández-Espriú A, Reyna-Gutiérrez JA, Sánchez-León E, Cabral-Cano E, Carrera-Hernández J, Martínez-Santos P, Falorni G, Colombo D (2014) DRASTIC-Sg model, a new extension to the DRASTIC approach for mapping groundwater vulnerability in aquifers subject to differential land subsidence: application to Mexico City. Hydrogeol J 22(6):1–17CrossRef
go back to reference Huang Y, Chen ZX, Yu T, Huang XZ, Gu XF (2018) Agricultural remote sensing big data: management and applications. J Integr Agric 17(9):1915–1931CrossRef Huang Y, Chen ZX, Yu T, Huang XZ, Gu XF (2018) Agricultural remote sensing big data: management and applications. J Integr Agric 17(9):1915–1931CrossRef
go back to reference Ibrahim-Bathis K, Ahmed SA (2016) Geospatial technology for delineating groundwater potential zones in Doddahalla watershed of Chitradurga district, India. Egypt J Remote Sens Space Sci 19:223–234 Ibrahim-Bathis K, Ahmed SA (2016) Geospatial technology for delineating groundwater potential zones in Doddahalla watershed of Chitradurga district, India. Egypt J Remote Sens Space Sci 19:223–234
go back to reference Jaiswal RK, Mukherjee S, Krishnamurthy J, Saxena R (2003) Role of remote sensing and GIS techniques for generation of groundwater prospect zones towards rural development: an approach. Int J Remote Sens 24(5):993–1008CrossRef Jaiswal RK, Mukherjee S, Krishnamurthy J, Saxena R (2003) Role of remote sensing and GIS techniques for generation of groundwater prospect zones towards rural development: an approach. Int J Remote Sens 24(5):993–1008CrossRef
go back to reference Jasrotia AS, Kumar A, Singh R (2016) Integrated remote sensing and GIS approach for delineation of groundwater potential zones using aquifer parameters in Devak and Rui watershed of Jammu and Kashmir, India. Arab J Geosci 9:304CrossRef Jasrotia AS, Kumar A, Singh R (2016) Integrated remote sensing and GIS approach for delineation of groundwater potential zones using aquifer parameters in Devak and Rui watershed of Jammu and Kashmir, India. Arab J Geosci 9:304CrossRef
go back to reference Jenifer MA, Jha MK (2017) Comparison of analytic hierarchy process, catastrophe and entropy techniques for evaluating groundwater prospect of hard-rock aquifer systems. J Hydrol 548:605–624CrossRef Jenifer MA, Jha MK (2017) Comparison of analytic hierarchy process, catastrophe and entropy techniques for evaluating groundwater prospect of hard-rock aquifer systems. J Hydrol 548:605–624CrossRef
go back to reference Jha MK, Chowdhury A, Chowdary VM, Peiffer S (2007) Groundwater management and development by integrated remote sensing and geographic information systems: prospects and constraints. Water Resour Manag 21:427–467CrossRef Jha MK, Chowdhury A, Chowdary VM, Peiffer S (2007) Groundwater management and development by integrated remote sensing and geographic information systems: prospects and constraints. Water Resour Manag 21:427–467CrossRef
go back to reference Kelleher JD, MacNamee B, D’Arcy A (2015) Fundamentals of machine learning for predictive data analytics: algorithms, worked examples, and case studies. MIT Press, Cambridge, 690 pp Kelleher JD, MacNamee B, D’Arcy A (2015) Fundamentals of machine learning for predictive data analytics: algorithms, worked examples, and case studies. MIT Press, Cambridge, 690 pp
go back to reference Kumar T, Gautam AK, Kumar T (2014) Appraising the accuracy of GIS-based multi-criteria decision making technique for delineation of groundwater potential zones. Water Resour Manag 28:4449–4466CrossRef Kumar T, Gautam AK, Kumar T (2014) Appraising the accuracy of GIS-based multi-criteria decision making technique for delineation of groundwater potential zones. Water Resour Manag 28:4449–4466CrossRef
go back to reference Lakshmi V (2016) Beyond GRACE: using satellite data for groundwater investigations. Ground Water 54(5):615–618CrossRef Lakshmi V (2016) Beyond GRACE: using satellite data for groundwater investigations. Ground Water 54(5):615–618CrossRef
go back to reference Leblanc M, Favreau G, Tweed S, Leduc C, Razack M, Mofor L (2007) Remote sensing for groundwater modelling in large semiarid areas: Lake Chad Basin, Africa. Hydrogeol J 15(1):97–100CrossRef Leblanc M, Favreau G, Tweed S, Leduc C, Razack M, Mofor L (2007) Remote sensing for groundwater modelling in large semiarid areas: Lake Chad Basin, Africa. Hydrogeol J 15(1):97–100CrossRef
go back to reference Lee S, Kim YS, Oh HJ (2012) Application of a weights-of-evidence method and GIS to regional groundwater productivity potential mapping. J Environ Manag 96:91–105CrossRef Lee S, Kim YS, Oh HJ (2012) Application of a weights-of-evidence method and GIS to regional groundwater productivity potential mapping. J Environ Manag 96:91–105CrossRef
go back to reference Liu T, Yan H, Zhai L (2015) Extract relevant features from DEM for groundwater potential mapping. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, volume XL-7/W4. International Workshop on Image and Data Fusion, Kona, Hawaii, 21–23 July 2015 Liu T, Yan H, Zhai L (2015) Extract relevant features from DEM for groundwater potential mapping. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, volume XL-7/W4. International Workshop on Image and Data Fusion, Kona, Hawaii, 21–23 July 2015
go back to reference Llamas MR, Martínez-Santos P (2005) Intensive groundwater use: silent revolution and potential source of social conflict. J Water Resour Plan Manag 131(5):337–341CrossRef Llamas MR, Martínez-Santos P (2005) Intensive groundwater use: silent revolution and potential source of social conflict. J Water Resour Plan Manag 131(5):337–341CrossRef
go back to reference Madani A, Niyazi B (2015) Groundwater potential mapping using remote sensing techniques and weights of evidence GIS model: a case study from Wadi Yalamlam basin, Makkah Province, Western Saudi Arabia. Environ Earth Sci 74:5129–5142CrossRef Madani A, Niyazi B (2015) Groundwater potential mapping using remote sensing techniques and weights of evidence GIS model: a case study from Wadi Yalamlam basin, Makkah Province, Western Saudi Arabia. Environ Earth Sci 74:5129–5142CrossRef
go back to reference Magaia LA, Goto TN, Masoud AA, Koike K (2018) Identifying groundwater potential in crystalline basement rocks using remote sensing and electromagnetic sounding techniques in central western Mozambique. Nat Resour Res 27(3):275–298CrossRef Magaia LA, Goto TN, Masoud AA, Koike K (2018) Identifying groundwater potential in crystalline basement rocks using remote sensing and electromagnetic sounding techniques in central western Mozambique. Nat Resour Res 27(3):275–298CrossRef
go back to reference Magesh NS, Chandrasekar N, Soundranayagam JP (2012) Delineation of groundwater potential zones in Theni district, Tamil Nadu, using remote sensing, GIS and MIF techniques. Geosci Front 3(2):198–196CrossRef Magesh NS, Chandrasekar N, Soundranayagam JP (2012) Delineation of groundwater potential zones in Theni district, Tamil Nadu, using remote sensing, GIS and MIF techniques. Geosci Front 3(2):198–196CrossRef
go back to reference Manikandan J, Kiruthika AM, Sureshbabu S (2014) Evaluation of groundwater potential zones in Krishnagiri District, Tamil Nadu using MIF technique. Int J Innovative Res Sci Eng Technol 3(3):10524–10534 Manikandan J, Kiruthika AM, Sureshbabu S (2014) Evaluation of groundwater potential zones in Krishnagiri District, Tamil Nadu using MIF technique. Int J Innovative Res Sci Eng Technol 3(3):10524–10534
go back to reference Martín-Loeches M, Reyes-López J, Ramírez-Hernández J, Temiño-Vela J, Martínez-Santos P (2018) Comparison of RS/GIS analysis with classic mapping approaches for siting low-yield boreholes for hand pumps in crystalline terrains: an application to rural communities of the Caimbambo province, Angola. J Afr Earth Sci 138:22–31 Martín-Loeches M, Reyes-López J, Ramírez-Hernández J, Temiño-Vela J, Martínez-Santos P (2018) Comparison of RS/GIS analysis with classic mapping approaches for siting low-yield boreholes for hand pumps in crystalline terrains: an application to rural communities of the Caimbambo province, Angola. J Afr Earth Sci 138:22–31
go back to reference Meijerink AMJ (2007) Remote sensing applications to groundwater, IHP-VI, Series on Groundwater no. 16, UNESCO, Paris, 311 pp Meijerink AMJ (2007) Remote sensing applications to groundwater, IHP-VI, Series on Groundwater no. 16, UNESCO, Paris, 311 pp
go back to reference Misi A, Gumindoga W, Hoko Z (2018) An assessment of groundwater potential and vulnerability in the upper Manyame sub-catchment of Zimbabwe. Phys Chem Earth 105:72–83CrossRef Misi A, Gumindoga W, Hoko Z (2018) An assessment of groundwater potential and vulnerability in the upper Manyame sub-catchment of Zimbabwe. Phys Chem Earth 105:72–83CrossRef
go back to reference Mitchell TM (1997) Machine learning. McGraw-Hill , New York, 432 pp Mitchell TM (1997) Machine learning. McGraw-Hill , New York, 432 pp
go back to reference Mogaji KA, Lim HS (2018) Application of Dempster-Shafer theory of evidence model to geoelectric and hydraulic parameters for groundwater potential zonation. NRIAG J Astron Geophys 7:134–148CrossRef Mogaji KA, Lim HS (2018) Application of Dempster-Shafer theory of evidence model to geoelectric and hydraulic parameters for groundwater potential zonation. NRIAG J Astron Geophys 7:134–148CrossRef
go back to reference Mohammadi-Behzad HR, Charchi A, Kalantari N, Nejad AM, Vardanjani HK (2018) Delineation of groundwater potential zones using remote sensing (RS), geographical information system (GIS) and analytic hierarchy process (AHP) techniques: a case study in the Leylia–Keynow watershed, southwest of Iran. Carbonates Evaporites. https://doi.org/10.1007/s13146-018-0420-7 Mohammadi-Behzad HR, Charchi A, Kalantari N, Nejad AM, Vardanjani HK (2018) Delineation of groundwater potential zones using remote sensing (RS), geographical information system (GIS) and analytic hierarchy process (AHP) techniques: a case study in the Leylia–Keynow watershed, southwest of Iran. Carbonates Evaporites. https://​doi.​org/​10.​1007/​s13146-018-0420-7
go back to reference Mokadem N, Boughariou E, Mudarra M, Ben Brahim F, Andreo B, Hamed Y, Bouri S (2018) Mapping potential zones for groundwater recharge and its evaluation in arid environments using a GIS approach: case study of North Gafsa Basin (central Tunisia). J Afr Earth Sci 141:107–117CrossRef Mokadem N, Boughariou E, Mudarra M, Ben Brahim F, Andreo B, Hamed Y, Bouri S (2018) Mapping potential zones for groundwater recharge and its evaluation in arid environments using a GIS approach: case study of North Gafsa Basin (central Tunisia). J Afr Earth Sci 141:107–117CrossRef
go back to reference Molina G, Gaber A, El-Baz F (2017) Mapping palaeolakes in the Ténéré Desert of northeastern Niger using space-borne data for groundwater potential. NRIAG J Astron Geophys 6:395–407CrossRef Molina G, Gaber A, El-Baz F (2017) Mapping palaeolakes in the Ténéré Desert of northeastern Niger using space-borne data for groundwater potential. NRIAG J Astron Geophys 6:395–407CrossRef
go back to reference MWE (2012) Groundwater Potential Map. Uganda. Scale 1:1,100,000. Ministry of Water and Environment. Government of Uganda, Kampala MWE (2012) Groundwater Potential Map. Uganda. Scale 1:1,100,000. Ministry of Water and Environment. Government of Uganda, Kampala
go back to reference Nag SK (2005) Application of lineament density and hydrogeomorphology to delineate groundwater potential zones of Baghmundi block in Purulia district, West Bengal. J Indian Soc Remote Sens 33(4):521–529CrossRef Nag SK (2005) Application of lineament density and hydrogeomorphology to delineate groundwater potential zones of Baghmundi block in Purulia district, West Bengal. J Indian Soc Remote Sens 33(4):521–529CrossRef
go back to reference Naghibi SA, Moghaddam DD, Kalantar B, Pradhan B, Kisi O (2017) A comparative assessment of GIS-based data mining models and a novel ensemble model in groundwater well potential mapping. J Hydrol 548:471–483CrossRef Naghibi SA, Moghaddam DD, Kalantar B, Pradhan B, Kisi O (2017) A comparative assessment of GIS-based data mining models and a novel ensemble model in groundwater well potential mapping. J Hydrol 548:471–483CrossRef
go back to reference Nampak H, Pradhan B, Manap MA (2014) Application of GIS based data driven evidential belief function model to predict groundwater potential zonation. J Hydrol 513:283–300CrossRef Nampak H, Pradhan B, Manap MA (2014) Application of GIS based data driven evidential belief function model to predict groundwater potential zonation. J Hydrol 513:283–300CrossRef
go back to reference Nanda S, Annadurai R, Barik KK (2017) Geospatial decipherment of groundwater potential of Kattankolathur block of Tamil Nadu using MCDM techniques. Remote Sens Appl Soc Environ 8:240–250 Nanda S, Annadurai R, Barik KK (2017) Geospatial decipherment of groundwater potential of Kattankolathur block of Tamil Nadu using MCDM techniques. Remote Sens Appl Soc Environ 8:240–250
go back to reference Nicolas M, Selles S, Bour O, Maréchal JC, Chandra S, Mohanty A, Ahmed MS (2017) Delineation of groundwater potential zones using non-invasive techniques to improve conceptual modelling of recharge in a non-instrumented weathered crystalline aquifer in South India. 43rd IAH Congress. Montpellier, France, December 2017 Nicolas M, Selles S, Bour O, Maréchal JC, Chandra S, Mohanty A, Ahmed MS (2017) Delineation of groundwater potential zones using non-invasive techniques to improve conceptual modelling of recharge in a non-instrumented weathered crystalline aquifer in South India. 43rd IAH Congress. Montpellier, France, December 2017
go back to reference Nsiah E, Appiah-Adjei EK, Adjei KA (2018) Hydrogeological delineation of groundwater potential zones in the Nabogo basin, Ghana. J Afr Earth Sci 143:1–9CrossRef Nsiah E, Appiah-Adjei EK, Adjei KA (2018) Hydrogeological delineation of groundwater potential zones in the Nabogo basin, Ghana. J Afr Earth Sci 143:1–9CrossRef
go back to reference Odzemir A (2011a) GIS-based groundwater spring potential mapping in the Sultan Mountains (Konya, Turkey) using frequency ratio, weights of evidence and logistic regression methods and their comparison. J Hydrol 411:290–308CrossRef Odzemir A (2011a) GIS-based groundwater spring potential mapping in the Sultan Mountains (Konya, Turkey) using frequency ratio, weights of evidence and logistic regression methods and their comparison. J Hydrol 411:290–308CrossRef
go back to reference Odzemir A (2011b) Using a binary logistic regression method and GIS for evaluating and mapping the groundwater spring potential in the Sultan Mountains (Aksehir, Turkey). J Hydrol 405:123–136CrossRef Odzemir A (2011b) Using a binary logistic regression method and GIS for evaluating and mapping the groundwater spring potential in the Sultan Mountains (Aksehir, Turkey). J Hydrol 405:123–136CrossRef
go back to reference Oh HJ, Kim YS, Choi JK, Park E, Lee S (2011) GIS mapping of regional probabilistic groundwater potential in the area of Pohang City, Korea. J Hydrol 399:158–172CrossRef Oh HJ, Kim YS, Choi JK, Park E, Lee S (2011) GIS mapping of regional probabilistic groundwater potential in the area of Pohang City, Korea. J Hydrol 399:158–172CrossRef
go back to reference Oikonomidis D, Dimogianni S, Kazakis N, Voudouris K (2015) A GIS/remote sensing-based methodology for groundwater potentiality assessment in Tirnavos area, Greece. J Hydrol 525:197–208CrossRef Oikonomidis D, Dimogianni S, Kazakis N, Voudouris K (2015) A GIS/remote sensing-based methodology for groundwater potentiality assessment in Tirnavos area, Greece. J Hydrol 525:197–208CrossRef
go back to reference Parks S, Byrnes J, Abdelsalam MG, Dávila DAL, Atekwana EA, Atya MA (2017) Assessing groundwater accessibility in the Kharga Basin, Egypt: a remote sensing approach. J Afr Earth Sci 136:272–281CrossRef Parks S, Byrnes J, Abdelsalam MG, Dávila DAL, Atekwana EA, Atya MA (2017) Assessing groundwater accessibility in the Kharga Basin, Egypt: a remote sensing approach. J Afr Earth Sci 136:272–281CrossRef
go back to reference Patra S, Mishra P, Mahapatra SC (2018) Delineation of groundwater potential zone for sustainable development: a case study from ganga alluvial plain covering Hooghly district of India using remote sensing, geographic information system and analytic hierarchy process. J Clean Prod 172:2485–2502CrossRef Patra S, Mishra P, Mahapatra SC (2018) Delineation of groundwater potential zone for sustainable development: a case study from ganga alluvial plain covering Hooghly district of India using remote sensing, geographic information system and analytic hierarchy process. J Clean Prod 172:2485–2502CrossRef
go back to reference Prasad RK, Mondal NC, Banerjee P, Nandakumar MV, Singh VS (2007) Deciphering potential groundwater zone in hard rock through the application of GIS. Environ Geol 55(3):467–475CrossRef Prasad RK, Mondal NC, Banerjee P, Nandakumar MV, Singh VS (2007) Deciphering potential groundwater zone in hard rock through the application of GIS. Environ Geol 55(3):467–475CrossRef
go back to reference Rahmati O, Melesse AM (2016) Application of Dempster–Shafer theory, spatial analysis and remote sensing for groundwater potentiality and nitrate pollution analysis in the semi-arid region of Khuzestan, Iran. Sci Total Environ 568:1110–1123CrossRef Rahmati O, Melesse AM (2016) Application of Dempster–Shafer theory, spatial analysis and remote sensing for groundwater potentiality and nitrate pollution analysis in the semi-arid region of Khuzestan, Iran. Sci Total Environ 568:1110–1123CrossRef
go back to reference Rao YS, Jugran DK (2004) Delineation of groundwater potential zones and zones of groundwater quality suitable for domestic purposes using remote sensing and GIS. Hydrol Sci J 48(5):821–833 Rao YS, Jugran DK (2004) Delineation of groundwater potential zones and zones of groundwater quality suitable for domestic purposes using remote sensing and GIS. Hydrol Sci J 48(5):821–833
go back to reference Saaty TL (2008) Decision making with the analytic hierarchy process. Int J Services Sci 1(1):83–98 Saaty TL (2008) Decision making with the analytic hierarchy process. Int J Services Sci 1(1):83–98
go back to reference Saha R, Dey NC, Rahman S, Galagedara L, Bhattacharya P (2018) Exploring suitable sites for installing safe drinking water wells in coastal Bangladesh. Groundw Sustain Devel 7:91–100CrossRef Saha R, Dey NC, Rahman S, Galagedara L, Bhattacharya P (2018) Exploring suitable sites for installing safe drinking water wells in coastal Bangladesh. Groundw Sustain Devel 7:91–100CrossRef
go back to reference Sahoo S, Das P, Kar A, Dhar A (2018) A forensic look into the lineament, vegetation, groundwater linkage: study of Ranchi District, Jharkhand (India). Remote Sens Appl Soc Environ 10:138–152 Sahoo S, Das P, Kar A, Dhar A (2018) A forensic look into the lineament, vegetation, groundwater linkage: study of Ranchi District, Jharkhand (India). Remote Sens Appl Soc Environ 10:138–152
go back to reference Samadder RK, Kumar S, Gupta RP (2011). Paleochannels and their potential for artificial groundwater recharge in the western Ganga plains. J Hydrol 400(2011):154–164 Samadder RK, Kumar S, Gupta RP (2011). Paleochannels and their potential for artificial groundwater recharge in the western Ganga plains. J Hydrol 400(2011):154–164
go back to reference Sander (2007) Lineaments in groundwater exploration: a review of applications and limitations. Hydrogeol J 15:71–74CrossRef Sander (2007) Lineaments in groundwater exploration: a review of applications and limitations. Hydrogeol J 15:71–74CrossRef
go back to reference Sander P, Chesley MM, Minor TB (1996) Groundwater assessment using RS and GIS in a rural groundwater project in Ghana: lessons learned. Hydrogeol J 4:40–49CrossRef Sander P, Chesley MM, Minor TB (1996) Groundwater assessment using RS and GIS in a rural groundwater project in Ghana: lessons learned. Hydrogeol J 4:40–49CrossRef
go back to reference Sander P, Minor TB, Chesley MM (1997) Groundwater exploration based on lineament analysis and reproducibility tests. Ground Water 35(5):888–894CrossRef Sander P, Minor TB, Chesley MM (1997) Groundwater exploration based on lineament analysis and reproducibility tests. Ground Water 35(5):888–894CrossRef
go back to reference Selvam S, Magesh NS, Chidambaram S, Rajamanickam M, Sashikkumar MS (2015) A GIS based identification of groundwater recharge potential zones using RS and IF technique: a case study in Ottapidaramtaluk, Tuticorin district, Tamil Nadu. Environ Earth Sci 73:3785–3799. https://doi.org/10.1007/s12665-014-36640 CrossRef Selvam S, Magesh NS, Chidambaram S, Rajamanickam M, Sashikkumar MS (2015) A GIS based identification of groundwater recharge potential zones using RS and IF technique: a case study in Ottapidaramtaluk, Tuticorin district, Tamil Nadu. Environ Earth Sci 73:3785–3799. https://​doi.​org/​10.​1007/​s12665-014-36640 CrossRef
go back to reference Sener E, Sener S, Davraz A (2018) Groundwater potential mapping by combining fuzzy-analytic hierarchy process and GIS in Beyşehir Lake Basin, Turkey. Arab J Geosci 11:187CrossRef Sener E, Sener S, Davraz A (2018) Groundwater potential mapping by combining fuzzy-analytic hierarchy process and GIS in Beyşehir Lake Basin, Turkey. Arab J Geosci 11:187CrossRef
go back to reference Shalev-Shwartz S, Ben-David S (2014) Understanding machine learning: from theory to algorithms. Cambridge University Press, Cambridge 449 ppCrossRef Shalev-Shwartz S, Ben-David S (2014) Understanding machine learning: from theory to algorithms. Cambridge University Press, Cambridge 449 ppCrossRef
go back to reference Siddha S, Sahu P (2018) Assessment of groundwater potential of Gandhinagar region. Gujarat. J Geol Soc India 91:91–98CrossRef Siddha S, Sahu P (2018) Assessment of groundwater potential of Gandhinagar region. Gujarat. J Geol Soc India 91:91–98CrossRef
go back to reference Simon N, Ali CA, Mohamed KR, Sharir K (2016) Best band ratio combinations for the lithological discrimination of the Dayang Bunting and Tuba Islands, Langkawi, Malaysia. Sains Malaysiana 45(5):659–667 Simon N, Ali CA, Mohamed KR, Sharir K (2016) Best band ratio combinations for the lithological discrimination of the Dayang Bunting and Tuba Islands, Langkawi, Malaysia. Sains Malaysiana 45(5):659–667
go back to reference Singh LK, Jha MK, Chowdary VM (2018) Assessing the accuracy of GIS-based multi-criteria decision analysis approaches for mapping groundwater potential. Ecol Indicators 91:24–37 Singh LK, Jha MK, Chowdary VM (2018) Assessing the accuracy of GIS-based multi-criteria decision analysis approaches for mapping groundwater potential. Ecol Indicators 91:24–37
go back to reference Solomon S, Quiel F (2006) Groundwater study using remote sensing and geographic information systems (GIS) in the central highlands of Eritrea. Hydrogeol J 14:729–741CrossRef Solomon S, Quiel F (2006) Groundwater study using remote sensing and geographic information systems (GIS) in the central highlands of Eritrea. Hydrogeol J 14:729–741CrossRef
go back to reference Sorensen R, Zinko U, Seibert J (2006) On the calculation of the topographic wetness index: evaluation of different methods based on field observations. Hydrol Earth Syst Sci 10:101–112CrossRef Sorensen R, Zinko U, Seibert J (2006) On the calculation of the topographic wetness index: evaluation of different methods based on field observations. Hydrol Earth Syst Sci 10:101–112CrossRef
go back to reference Sternberg T, Paillou P (2015) Mapping potential shallow groundwater in the Gobi Desert using remote sensing: Lake Ulaan Nuur. J Arid Environ 118:21–27CrossRef Sternberg T, Paillou P (2015) Mapping potential shallow groundwater in the Gobi Desert using remote sensing: Lake Ulaan Nuur. J Arid Environ 118:21–27CrossRef
go back to reference Sultan SA, Essa KSAT, Khalil MH, El-Nahry AEH, Galal ANH (2017) Evaluation of groundwater potentiality survey in south Ataqa-northwestern part of Gulf of Suez by using resistivity data and site-selection modeling. NRIAG J Astron Geophys 6:230–243CrossRef Sultan SA, Essa KSAT, Khalil MH, El-Nahry AEH, Galal ANH (2017) Evaluation of groundwater potentiality survey in south Ataqa-northwestern part of Gulf of Suez by using resistivity data and site-selection modeling. NRIAG J Astron Geophys 6:230–243CrossRef
go back to reference Tahmassebipoor N, Rahmati O, Noormohamadi F, Lee S (2016) Spatial analysis of groundwater potential using weights-of-evidence and evidential belief function models and remote sensing. Arab J Geosci 9:79CrossRef Tahmassebipoor N, Rahmati O, Noormohamadi F, Lee S (2016) Spatial analysis of groundwater potential using weights-of-evidence and evidential belief function models and remote sensing. Arab J Geosci 9:79CrossRef
go back to reference Teeuw RM (1995) Groundwater exploration using remote sensing and a low-cost geographical information system. Hydrogeol J 3(3):21–30CrossRef Teeuw RM (1995) Groundwater exploration using remote sensing and a low-cost geographical information system. Hydrogeol J 3(3):21–30CrossRef
go back to reference Thapa R, Gupta S, Gupta A, Reddy DV, Kaur H (2017b) Use of geospatial technology for delineating groundwater potential zones with an emphasis on water-table analysis in Dwarka River basin, Birbhum, India. Hydrogeol J 26:899–922CrossRef Thapa R, Gupta S, Gupta A, Reddy DV, Kaur H (2017b) Use of geospatial technology for delineating groundwater potential zones with an emphasis on water-table analysis in Dwarka River basin, Birbhum, India. Hydrogeol J 26:899–922CrossRef
go back to reference Tschritter, C, Westerhoff R, Rawlinson, Z, White P (2017). Aquifer classification and mapping at the national scale: phase 1—identification of hydrogeological units. GNS Science Rep 2016/51, GNS Science, Lower Hutt, New Zealand, 52 pp Tschritter, C, Westerhoff R, Rawlinson, Z, White P (2017). Aquifer classification and mapping at the national scale: phase 1—identification of hydrogeological units. GNS Science Rep 2016/51, GNS Science, Lower Hutt, New Zealand, 52 pp
go back to reference UNESCO (2015) Water for a sustainable world. Facts and figures. The United Nations World Water Development Report 2015. United Nations World Water Assessment Programme Programme Office for Global Water Assessment, Division of Water Sciences, Perugia, Italy, 12 pp UNESCO (2015) Water for a sustainable world. Facts and figures. The United Nations World Water Development Report 2015. United Nations World Water Assessment Programme Programme Office for Global Water Assessment, Division of Water Sciences, Perugia, Italy, 12 pp
go back to reference Varade AM, Khare YD, Yadav P, Doad AP, Das S, Kanetkar M, Golekar RD (2018) ‘Lineaments’ the potential groundwater zones in hard rock area: a case study of basaltic terrain of WGKKC-2 watershed from Kalmeswar Tehsil of Nagpur District, Central India. J Indian Soc Remote Sens 46(4):539–549CrossRef Varade AM, Khare YD, Yadav P, Doad AP, Das S, Kanetkar M, Golekar RD (2018) ‘Lineaments’ the potential groundwater zones in hard rock area: a case study of basaltic terrain of WGKKC-2 watershed from Kalmeswar Tehsil of Nagpur District, Central India. J Indian Soc Remote Sens 46(4):539–549CrossRef
go back to reference Venkatesan V, Krishnaveni M, Karunakaran K, Ravikumar G (2010) GIS based multi-criteria analysis for assessment of groundwater potential and land suitability. Int J Earth Sci Eng 3(2):207–224 Venkatesan V, Krishnaveni M, Karunakaran K, Ravikumar G (2010) GIS based multi-criteria analysis for assessment of groundwater potential and land suitability. Int J Earth Sci Eng 3(2):207–224
go back to reference Venkateswaran S, Ayyandurai R (2015) Groundwater potential zoning in upper Gadilam River basin. Tamil Nadu. Aquatic Procedia 4:1275–1282CrossRef Venkateswaran S, Ayyandurai R (2015) Groundwater potential zoning in upper Gadilam River basin. Tamil Nadu. Aquatic Procedia 4:1275–1282CrossRef
go back to reference Vias J, Andreo B, Perles M, Carrasco F (2005) A comparative study of four schemes for groundwater vulnerability mapping in a diffuse flow carbonate aquifer under Mediterranean climatic conditions. Environ Geol 47:586–595CrossRef Vias J, Andreo B, Perles M, Carrasco F (2005) A comparative study of four schemes for groundwater vulnerability mapping in a diffuse flow carbonate aquifer under Mediterranean climatic conditions. Environ Geol 47:586–595CrossRef
go back to reference Vishwakarma J, Sinha MK, Verma MK, Ahmad I (2014) Application of remote sensing and GIS in groundwater prospect mapping. Int J Eng Res Technol 3(10):549–555 Vishwakarma J, Sinha MK, Verma MK, Ahmad I (2014) Application of remote sensing and GIS in groundwater prospect mapping. Int J Eng Res Technol 3(10):549–555
go back to reference Wendt L, Hilberg S, Rob J, Dirnberger D, Strasser T, Braun A (2016) Remote sensing in hydrogeology: a short summary of methods and constraints for groundwater exploration. Technical report, University of Salzburg and University of Tübingen, Germany, 57 pp Wendt L, Hilberg S, Rob J, Dirnberger D, Strasser T, Braun A (2016) Remote sensing in hydrogeology: a short summary of methods and constraints for groundwater exploration. Technical report, University of Salzburg and University of Tübingen, Germany, 57 pp
go back to reference Xie Y, Sha Z, Yu M (2008) Remote sensing imagery in vegetation mapping: a review. J Plant Ecol 1(1):9–23CrossRef Xie Y, Sha Z, Yu M (2008) Remote sensing imagery in vegetation mapping: a review. J Plant Ecol 1(1):9–23CrossRef
go back to reference Yeh HF, Cheng YS, Lin HI, Lee CH (2016) Mapping groundwater recharge potential zone using a GIS approach in Hualian River, Taiwan. Sustain Environ Res 26:33–43CrossRef Yeh HF, Cheng YS, Lin HI, Lee CH (2016) Mapping groundwater recharge potential zone using a GIS approach in Hualian River, Taiwan. Sustain Environ Res 26:33–43CrossRef
go back to reference Younger P (2007) Groundwater in the environment: an introduction. Blackwell, Oxford, 318 pp Younger P (2007) Groundwater in the environment: an introduction. Blackwell, Oxford, 318 pp
Metadata
Title
Review: Advances in groundwater potential mapping
Authors
S. Díaz-Alcaide
P. Martínez-Santos
Publication date
17-08-2019
Publisher
Springer Berlin Heidelberg
Published in
Hydrogeology Journal / Issue 7/2019
Print ISSN: 1431-2174
Electronic ISSN: 1435-0157
DOI
https://doi.org/10.1007/s10040-019-02001-3

Other articles of this Issue 7/2019

Hydrogeology Journal 7/2019 Go to the issue