Projects
1. Khadri, S.F.R. & Chaitanya, P., (2014), Urban Water Supply Systems - A Case Study On Water Network Distribution in Chalisgaon City in Dhule District Maharashtra Using Remote Sensing & GIS Techniques, In International Conference on Advances in Engineering & Technology, pp.1-12, (Accessed 2 June 2026).
2. Brisaboa, N.R., Lema, J.A.C., Martínez, A.F., Luaces, M.R. & Viqueira, J.R., (2003). The eiel project: An experience of gis development, In Proc. of the 9th EC-GI & GIS Workshop (ECGIS), A Coruña, Spain. (Accessed 2 June 2026).
3. Harris, L.M., (2002), Water and conflict geographies of the Southeastern Anatolia Project, Society & Natural Resources, 15(8), pp.743-759. (Accessed 2 June 2026).
4. Paul, R., Kenway, S., McIntosh, B. and Mukheibir, P. (2018). Urban Metabolism of Bangalore City: A Water Mass Balance Analysis, Journal of Industrial Ecology. (Accessed 2 June 2026).
5. World Bank, 1991, Rural Water Supply & Sanitation Project. (Accessed 2 June 2026).
6. African Development Bank, (2013), Water Supply and Sanitation Project in Kenya: Unlocking Development Potential for Inclusive Growth, Building Today, a Better Africa Tomorrow, African Development Bank, (Accessed 2 June 2026).
7. Themistocleous, K., Agapiou, A., Papachristodoulou, A., Evlogimenos, P., Theodorou, M., Sotiropoulos, P., Maroulakis, S., Karaolides, C., Hadjimitsis, M., Onoufriou, T. & Hadjimitsis, D., (2013). Geo-radar scanning and GIS mapping of an old water utility network in Paphos district area in Cyprus under the project: 'Upgrade of the hydraulics laboratory for the modeling of water supply networks and design and operation optimization study', First International Conference on Remote Sensing and Geoinformation of the Environment (RSCy2013), 8795, (Accessed 2 June 2026).
8. FREITAS, L., AFONSO, M., DEVY-VARETA, N., MARQUES, J., GOMES, A. & CHAMINÉ, H., (2013), Coupling Hydrotoponymy and GIS Cartography: A Case Study of Hydrohistorical Issues in Urban Groundwater Systems, Porto, NW Portugal, Geographical Research, 52(2), pp.182-197, (Accessed 2 June 2026).
9. Thrasyvoulou, P., Patsalosavvis, K. & Zafirakou, A., (2015), Water supply management in Cyprus under climate uncertainty, Desalination and Water Treatment, 57(5), pp.2279-2289, (Accessed 2 June 2026).
10. Cordão, M., Rufino, I., Barros Ramalho Alves, P. & Barros Filho, M., (2020), Water shortage risk mapping: a GIS-MCDA approach for a medium-sized city in the Brazilian semi-arid region. Urban Water Journal, 17(7), pp.642-655, (Accessed 2 June 2026).
11. Schill, S. & Jensen, J., (2000), Predicting the Impact of Coastal Development on Water Quality Using Remote Sensing and GIS‐assisted Hydrologic Modeling Techniques. Geocarto International, 15(4), pp.7-16, (Accessed 2 June 2026).
12. Filintas, A., Dioudis, P. & Prochaska, C., (2010). GIS modeling of the impact of drip irrigation, of water quality and of soil’s available water capacity onZea maysL. biomass yield and its biofuel potential. Desalination and Water Treatment, 13(1-3), pp.303-319, (Accessed 2 June 2026).
13. Abolghasem Akbari, Ramani Bai Varadharajan, (2007), Application of GIS and RS in rural water supply systems. The 28th Asian Conference on Remote Sensing, (Accessed 2 June 2026).
14. Endre Slamon, Tamás Papp, Zoltán Goda, (2021), Possible applications of GIS tools in order to prepare for drinking water distribution network emergencies, (Accessed 2 June 2026).
15. European Commission (2024), Improvements to water and sewerage networks in Romania’s Brașov County, (Accessed 2 June 2026).
16. European Commission (2026), Wastewater network development projects. Reforms and Investments, (Accessed 2 June 2026).
17. Esri (2026), Uniting the UK water sector through open data, (Accessed 2 June 2026).
18. Geolantis (2026), Utility mapping case studies & success stories, (Accessed 2 June 2026).
19. Esri (2023), Enterprise GIS unites Liberty Utilities processes, (Accessed 2 June 2026).
20. GIS Cloud (2020), Digital transformation of field operations in a water utility company using GIS Cloud: case study, (Accessed 2 June 2026).
21. Esri Australia (2021), Pioneering Australia’s first intelligent water network: North East Water’s blueprint for digital transformation, (Accessed 2 June 2026).
22. Interreg VI-A IPA Croatia–Bosnia and Herzegovina–Montenegro (2024), SMART-Water: Self-sustainable Multisensor System for Monitoring Water Quality in Inland Waterbodies, (Accessed 2 June 2026).
23. European Commission (2014), Helping water utilities adapt to climate change: PREPARED project. Horizon 2020 Newsroom, (Accessed 2 June 2026).
24. Trietsch, E., Raaphorst, R., Tinelli, S. and Juran, I. (2018), Demonstration of Sensing, Information and Communication Technology (SICT) Solutions for Smart Water Management: The Smart Water for Europe (SW4EU) Project. International Water Resources Association (IWRA), (Accessed 2 June 2026).
25. European Commission (2024), WaterSmartLand: Creating water-smart landscapes. CORDIS, Grant Agreement No. 101125476, (Accessed 2 June 2026).
