Remote Sensing and GIS Based Groundwater Potential Zone Mapping in Ariyalur District, Tamil Nadu
Tóm tắt
Từ khóa
Tài liệu tham khảo
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. Jour., v.18(1), pp.1481–95.
Bagyaraj, M., Ramkumar, T., Venkatramanan, S., Gurugnanam, B. (2013) Application of remote sensing and GIS analysis for identifying groundwater potential zone in parts of Kodaikanal Taluk, South India. Front. Earth Sci., v.7(1), pp.65–75.
Brunner, P., Bauer, P., Eugster, M., Kinzelbach, W. (2004) Using remote sensing to regionalize local rainfall recharge rates obtained from the chloride method. Jour. Hydrol., v.294(4), pp.241–250.
Chowdhury, A., Jha, M.K., Chowdary, V.M,, Mal, B.C. (2009) Integrated remote sensing and GIS-based approach for assessing groundwater potential in west medinipur district, west Bengal, India. Internat. Jour. Remote Sens., v.30(1), pp.231–250.
Chowdhury, A., Jha, M.K., Chowdary, V.M. (2010) Delineation of groundwater recharge zones and identification of artificial recharge sites in West Medinipur district, West Bengal, using RS, GIS and MCDM techniques. Environ. Earth Science, v.59(1), pp.1209–1222.
Dhinagaran. (2009) District Groundwater brochure, Central Ground Water Board, Chennai.
Ganapuram, S., Vijaya Kumar, G.T., Murali Krishna, I.V., Kahya, E., Cuneyd Demirel, M. (2009) Mapping of groundwater potential zones in the Musi basin using remote sensing data and GIS. Adv. Engg. Software, v.40(1), pp.506–518.
Goodchild, M.F. (1993) The state of GIS for environmental problem solving. In: Goodchild MF, Parks BO, Steyaert LT (eds) Environmental modeling with GIS. Oxford University Press, New York, pp.8–15.
Haridas, V.R., Aravindan, S., Girish, G. (1998) Remote sensing and its applications for groundwater favourable area identification. Quart. Jour. GARC, v.6, pp.18–22.
Harinarayana, P., Gopalakrishna, G.S, Balasubramanian, A. (2000) Remote sensing data for groundwater development and management in Keralapura watersheds of Cauvery basin, Karnataka, India. Indian Mineralogists, v.34, pp.11–17.
Hinton, J.C. (1996) GIS and Remote Sensing Integration for Environmental Applications. Geographical Information Systems, v.10(7), pp.877–890.
Horton, R.E. (1945) Erosional development of streams and their drainage density: hydrophysical approach to quantitative geomorphology. Geol. Soc. Amer. Bull., v.56, pp.275–370.
Hsin-Fu Yeh, Youg-Sin Cheng, Hung-I Lin, Cheng-Haw Le. (2016) Mapping groundwater recharge potential zone using a GIS approach in Hualian River, Taiwan. Sustainable Environment Research, v.26, pp.33–43
Hyun Joo Oh., Yong Sung Kim., Jong Kuk Choi., Eungyu Park., Saro Lee. (2011) GIS mapping of regional probabilistic groundwater potential in the area of Pohang City, Korea. Journal of Hydrology, v.399(1), pp.158–172.
Imran A Dar., Sankar K., Mithas A Dar. (2010) Remote sensing technology and geographic information system modeling: An integrated approach towards the mapping of groundwater potential zones in Hardrock terrain, Mamundiyar basin. Jour. Hydrol., v.394(1), pp.285–295.
Jha, M.K., Chowdhury, A., Chowdary, V.M., Peiffer, S. (2007) Groundwater management and development by integrated remote sensing and geographic information systems: prospects and constraints. Water Resour. Managmt., v.21(2), pp.427–467.
Kane, W.F., Peters, D.C., Speirer, R.A. (1996) Remote sensing in investigation of engineered underground structures. Jour.. Geotech. Engg., v.122, pp.674–681.
Koike, K., Nagano, S., Ohmi, M. (1998) Lineament Analysis of Satellite Images Using A Segment Tracing Algorithm (STA). Computers and Geosciences, v.21(9), pp.1091–1104.
Leblanc, M., Leduc, C., Razack, M., Lemoalle, J., Dagorne, D., Mofor, L. (2003) Application of remote sensing and GIS for groundwater modeling of large semiarid areas: example of the Lake Chad Basin, Africa. In: Hydrology of Mediterranean and Semiarid Regions Conference, Montpieller, France. Red Books Series, 278. IAHS, Wallingford, pp.186–192.
Magesh, N.S., Chandrasekar, N., John Prince Soundranayagam. (2012) Delineation of groundwater potential zones in Theni district, Tamil Nadu, using remote sensing, GIS and MIF techniques. Geoscience Frontiers, v.3(2), pp.189–196.
Mogaji, KA., Lim, H.S., Abdullah, K. (2015) Regional prediction of groundwater potential mapping in a multifaceted geology terrain using GIS-based Dempster—Shafer model, Arab. Jour. Geosci., v.8, pp.3235–3258. DOI https://doi.org/10.1007/s12517-014-1391-1 .
Mohammad Imran Malik, Sultan Bhat, M., Shahnaz Ahmad Najar (2016) Remote Sensing and GIS Based Groundwater Potential Mapping for Sustainable Water Resource Management of Lidder Catchment in Kashmir Valley, India. Jour. Geol. Soc. India, v.87, pp.716–726.
Muralitharan, J., Palanivel, K. (2015) Groundwater targeting using remote sensing, geographical information system and analytical hierarchy process method in hard rock aquifer system, Karur district, Tamil Nadu, India. Earth Sci. Inform., v.8, pp.827–842.
Murthy, K.S.R (2000) Groundwater potential in a semi-arid region of Andhra Pradeshda geographical information system approach. Internat. Jour. Remote Sensing, v.21, pp.1867–1884.
Nagarajan, M., Sujit Singh (2009) Assessment of Groundwater Potential Zones using GIS Technique. Jour. Indian Soc. Remote Sens., v.37, pp.69–77.
Pankaj Kumar, Srikantha Herath, Ram Avtar, Kazuhiko Takeuchi (2016) Mapping of groundwater potential zones in Killinochi area, Sri Lanka, using GIS and remote sensing techniques. Sustain. Water Resour. Managmt. v.2, pp.419–430, DOI https://doi.org/10.1007/s40899-016-0072-5 .
Prasad, R.K., Mondal, N.C., Banerjee, P., Nandakumar, M.V., Singh, V.S. (2008) Deciphering potential groundwater zone in hard rock through the application of GIS. Environ. Geol., v.55(3), pp.467–475.
Prasanta Kumar Ghosh., Sujay Bandyopadhyay., Narayan Chandra Jana. (2016) Mapping of groundwater potential zones in hard rock terrain using geoinformatics: a case of Kumari watershed in western part of West Bengal, Model. Earth Syst. Environ., v.2, DOI https://doi.org/10.1007/s40808-015-0044-z .
Rahmati, O., Nazari Samani, A., Mahdavi, M., Pourghasemi, H.R., Zeinivand, H. (2014) Groundwater potential mapping at Kurdistan region of Iran using analytic hierarchy process and GIS. Arab J Geosci, doi: https://doi.org/10.1007/s12517-014-1668-4 .
Rao, B.V., Briz-Kishore, B.H. (1991) A methodology for locating potential aquifers in a typical semi-arid region in India using resistivity and hydrogeologic parameters. Geoexploration, v.27, pp.55–64.
Saha, D., Dhar, Y.R., Vittal, S.S. (2010) Delineation of groundwater development potential zones in parts of marginal Ganga alluvial plain in south Bihar, eastern India. Environ. Monitor., v.165(1–4), pp.179–191.
Selvam, S., Dar Farooq, A., Magesh, N.S., Singaraja, C., Venkatramanan, S., Chung, S.Y. (2016) Application of remote sensing and GIS for delineating groundwater recharge potential zones of Kovilpatti Municipality, Tamil Nadu using IF technique, Earth Sci. Inform., v.9, pp.137–150.
Senanayake, I.P., Dissanayake, D.M.D.O.K., Mayadunna, B.B., Weerasekera, W.L. (2016) An approach to delineate groundwater recharge potential sites in Ambalantota, Sri Lanka using GIS techniques, Geoscience Frontiers,v.7, pp.115–124.
Shaban, A., Khawlie, M., Abdallah, C. (2006) Use of remote sensing and GIS to determine recharge potential zone: the case of Occidental Lebanon. Hydrogeol. Jour., v.14, pp.433–443.
Singh, A.K., Prakash, S.R. (2003) An integrated approach of remote sensing, geophysics and GIS to evaluation of groundwater potentiality of Ojhala subwatershed, Mirzapur district, UP, India. Map India conference.
Solomon, S., Quiel, F. (2006) Groundwater study using remote sensing and geographic information systems (GIS) in the central highlands of Eritrea. Hydrogeol. Jour., v.14, pp.1029–1041.
Swetha, T.V., Girish Gopinath., Thrivikramji, K.P., Jesiya, N.P. (2017) Geospatial and MCDM tool mix for identification of potential groundwater prospects in a tropical river basin, Kerala. Environ. Earth Sci., v.76(428), DOI https://doi.org/10.1007/s12665-017-6749-8 .
Thomas, A., Sharma, P.K., Sharma, M.K., Sood Anil. (1999) Hydrogeomorphological mapping in assessing groundwater by using remote sensing datada case study in Lehra Gage Block, Sangrur district, Punjab. Jour. Indian Soc. Remote Sensing, v.27, pp.31–42.
Tiwari, A., Rai, B. (1996) Hydromorphological mapping for groundwater prospecting using landsate MSS images case study of Part of Dhanbad District, Bihar. Jour. Indian Soc. Remote Sensing, v.24, pp.281–285.
Tweed, S.O., Leblanc, M., Webb, J.A., Lubczynski, M.W. (2007) Remote sensing and GIS for mapping groundwater recharge and discharge areas in salinity prone catchments, south eastern Australia. Hydrogeol. Jour., v.15, pp.75–96.
Vasanthavigar, M., Srinivasamoorthy, K., Vijayaragavan, K., Gopinath, S., Sarma, S. (2011) Groundwater potential zoning in Thirumani- muttar subbasin Tamilnadu, India - a GIS and remote sensing approach, geo-spatial. Inf. Sci, v.14(1), pp.17–26.