S0049-3848(14)00284-9

Original Article

Assessment of Groundwater Potential Zones of Tons Basin Using Spatial Data

Year: 2020 | Month: September | Volume 13 | Issue 3

References (25)

1.Rajat Agarwal, Garg, P and Garg, R. 2013. “Remote Sensing and GIS Based Approach for Identification of Artificial Recharge Sites,” Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer; European Water Resources Association (EWRA), 27(7): 2671-2689.

View at Google Scholar

2.Ahmad, Imran, Sankar, Kiruba and Dar, Imran. 2010. Remote sensing technology and geographic information system modeling: An integrated approach towards the mapping of groundwater potential zones in Hardrock terrain, Mamundiyar basin. Journal of Hydrology, 394: 285-295.

View at Google Scholar

3.Arkoprovo, B., Adarsa, J. and Prakash, S.S. 2012. Delineation of Groundwater Potential Zones using Satellite Remote Sensing and Geographic Information System Techniques: A Case study from Ganjam district, Orissa, India.

View at Google Scholar

4.Benjmel, K., Amraoui, F., Boutaleb, S., Ouchchen, M., Tahiri, A. and Touab, A. 2020. Mapping of Groundwater Potential Zones in Crystalline Terrain Using Remote Sensing, GIS Techniques, and Multicriteria Data Analysis (Case of the Ighrem Region, Western Anti-Atlas, Morocco). Water 2020, 12, 471

View at Google Scholar

5.Bera, Kartic and Bandyopadhyay, Jatisankar. 2013. Ground Water Potential Mapping in Dulung Watershed using Remote Sensing & GIS techniques, West Bengal, India. International Journal of Scientific Research, 12: 1-2250.

View at Google Scholar

6.Etishree Agarwal, Rajat Agarwal, Gargand, R.D. and Garg, P.K. 2013. Delineation of groundwater potential zone: An AHP/ANP approach. J. Earth Syst. Sci., 122(3): 887–898.

View at Google Scholar

7.Ganapuram, Sreedhar, Kumar, G.T., Krishna, I.V., Kahya, Ercan and Demirel, Mehmet. 2009. Mapping of groundwater potential zones in the Musi basin using remote sensing data and GIS. Advances in Engineering Software, 40: 506-518.

View at Google Scholar

8.Ghosh, P., Bandyopadhyay, S. and Jana, N. 2015. Mapping of groundwater potential zones in hard rock terrain using geoinformatics: a case of Kumari watershed in western part of West Bengal. Modeling Earth Systems and Environment, 2: 1-12.

View at Google Scholar

9.Hussein, Abdul-Aziz, Govindu, Vanum, Nigusse, Amare Gebre Medhin. 2016. Evaluation of groundwater potential using geospatial techniques. Applied Water Science, pp. 1-16.

View at Google Scholar

10.Jagannathan, K., Kumar, N.V., Jayaraman, V. and Manivel, M. 1996. An approach to demarcate Ground water potential zones through Remote Sensing and Geographic Information System. International Journal of Remote Sensing, 17(10): 1867-1884.

View at Google Scholar

11.Kara, Y. 2019. Measuring the Sustainability of Cities in Turkey with the Analytic Hierarchy Process. Open Journal of Social Sciences, 07(04): 322-334.

View at Google Scholar

12.Ketan, S.K. and Sanyal, A.J. 2017. Assigning rank and weightage to landscape parameter to work on ground water potential-case of MIDIC Butibori Nagpur. International Journal of Advance Reseerch, 5(2): 1122-1125.

View at Google Scholar

13.Lee, C.H. 2008. GIS for assessment of Groundwater Potential zone, Sustainable Environment Research, 58: 18-195.

View at Google Scholar

14.Machiwal, D., Jha, M.K. and Mal, B.C. 2011. Assessment of groundwater potential in a semi-arid region of India using remote sensing, GIS and MCDM techniques. Water Resources Management, 25(5): 1359-1386.

View at Google Scholar

15.Mukherjee, P., Singh, C.K. and Mukherjee, S. 2012. Delineation of groundwater potential zones in arid region of India—a remote sensing and GIS approach. Water Resources Management, 26(9): 2643-2672.

View at Google Scholar

16.Nag, S.K. and Ghosh, P. 2013. Delineation of groundwater potential zone in Chhatna Block, Bankura District, West Bengal, India using remote sensing and GIS techniques. Environmental Earth Sciences, 70(5): 2115-2127.

View at Google Scholar

17.Nigam, G.K. and Tripathi, M.P. 2020. Generation of Groundwater Zones for Selection of Prospective Suitable Water Harvesting Structure Sites for Sustainable Water Supply Towards the Agricultural Development. Agric. Res., 9: 148–160.

View at Google Scholar

18.Preeja, R., Joseph, S., Thomas, J. and Vijith, H. 2011. Identification of Groundwater Potential Zones of a Tropical River Basin (Kerala, India) Using Remote Sensing and GIS Techniques. Journal of the Indian Society of Remote Sensing, 39(1): 83-94.

View at Google Scholar

19.Ram Avtar, C.K. Singh, Satyanarayan Shashtri, Amit Singh and Saumitra Mukherjee. 2010. Identification and analysis of groundwater potential zones in Ken–Betwa river linking area using remote sensing and geographic information system, Geocarto International, 25(5): 379-396.

View at Google Scholar

20.Rao, Y. and Jugran, D. 2003. Delineation of groundwater potential zones and zones of groundwater quality suitable for domestic purposes using remote sensing and GIS. Hydrological Sciences Journal, 48(5): 821-833.

View at Google Scholar

21.Sahoo, P.C., Panda, P., Sahu, K.C. and Pattainak, D.S. 2018. Hydro Geomorphological Characteristics and Delineation of Ground Water Potential Zone - A Case Study of Rushikulya and Bahuda Basin, Ganjam Odisha. International Journal of Advanced Remote Sensing and GIS, 7: 2540-2550.

View at Google Scholar

22.Sapna Pandey, 2013. Remote Sensing and GIS Based Assessment of Ground Water Potential Zones of Narsinghpur District in Upper Narmada Basin.

View at Google Scholar

23.Savita, R.S., Mittal, H.K., Satishkumar, U., Singh, P.K., Yadav, K.K., Jain, H.K., Mathur, S.M. and Sham Davand. 2018. Demarcation of the groundwater potential zones in Kanakanala Reservoir Subwatershed, Karnataka by using RS and GIS approach.

View at Google Scholar

24.Shashikumar M.C., Selvam, S., Lenin Kalyanasundaram, V. and Colins, J. 2017. GIS based Groundwater modeling study to assess the effect of artificial recharge: a case study from Kodaganar river basin, Dindigul district, Tamil Nadu. Journal Geological Society of India, 89(1): 57-64.

View at Google Scholar

25.Thomas L Satty. 2008. Decision making with the analytic hierarchy process. International Journal Services Sciences, 1(1): 83-97.

View at Google Scholar

International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

26930639 - Visitors since February 20, 2019