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Applying the Msharpp Method in Risk Assessment for the Water Supply Critical Infrastructure Sector

References 1. O.M.C. Bucoveţchi, Critical Infrastructure Protection - Object - Based Modeling, (doctoral thesis developed and sustained in 2014 within the University Politehnica of Bucharest). 2. http://www.unwater.org/worldwaterday/campaign-materials/facts-and-figures/en 3. PromoSan - CRSPB, Analysis of the WWD 2013 Situation. 4. http://www.apabotosani.ro/Lists/Anunuri/Attachments/115/WUM_RO_FINAL.pdf 5. D. Soare, Optimization in the Operation of Water Supply Systems and

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Identification of Failure Causes in the Water Supply Network

w Polsce. Komitet Inżynierii Lądowej i Wodnej PAN, Warszawa 2010. 4. Kwietniewski M., Roman M., Kłoss-Trębaczkiewicz H.: Niezawodność wodociągów i kanalizacji, Arkady, Warszawa 1993. 5. Petrozolin W.: Uszkodzenia sieci wodociągowej w Warszawie. Przegląd Informacyjny JGK, 1/1971. 6. Piegdoń I., Tchórzewska-Cieślak B.: Seasonality of water supply network failure in the aspect of water supply safety. E3S Web of Conferences 44, 00140, 2018. 7. Pietrucha-Urbanik K., Studziński A.: Selected issues of costs and failure of pipes in an exemplary

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Safety Problems of Small Water Supply Systems

5. Literatura [1] Andreolli M., Giovannini M., Fatone F., Kyamunyogonya M., Yatuha J. A basic bottom-up approach for small systems of safe-water supply: A decentralized case study in Uganda, Journal of Water Supply: Research and Technology - AQUA, 64 (1)2014, pp. 105-116. [2] Bayraktar B.: Determining optimum hydraulic parameters in branched water supply system. Journal of the Balkan Tribological Association, 2(18)2012, pp. 174-183. [3] Council Directive 98/83/EC of 3 November 1998 on the quality of water intended for human consumption. [4

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Analysis of Selected Reliability Indicators of Water Supply Network

Transport Systems, 10(9)/2016, s. 587-593. [19] Szlachta A., Analiza niezawodności sieci wodociągowej w Rzeszowie Praca dyplomowa magisterska,/2017. [20] Szopa T., Niezawodność i bezpieczeństwo , Oficyna Wydawnicza PW, 2009. [21] Szpak D. Tchórzewska-Cieślak B., Water producers risk analysis connected with collective water supply system functioning , Dependability Engineering and Complex Systems. Advances in Intelligent Systems and Computing 470. Proceedings of the Eleventh International Conference on Dependability and Complex Systems DepCoS

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The Method of Identification the Failure Risk on Water Supply Networks

5. Bibliografia [1] Imran S. A. Sadiq R., Kleiner Y.,, Managing the impact of changing treatment practices on distribution system water quality , WCWWA 60 th Anniversary Conference, Regina, 2008 [2] Kaplan S. Garrick B. J., On the quantative definition of risk Risk Analysis, 1(1)/1981, s. 11-27. [3] Kleiner Y. Rajani B., Sadiq R., Failure risk management of buried infrastructure using fuzzy-based techniques, Journal of Water Supply Research and Technology - AQUA, International Water Association Publishing, 55(2)/2006, s. 81-94. [4

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Water Supply in the Republic of Serbia – State and Perspectives

References Bladon, K., Emelko, M., Silins, U. & Stone, M. (2014). Wildfire and the Future of Water Supply, Environmental, Science and Technology, 48, 8936-8943, DOI: 10.1021/es500130g Calatrava, J. & Garrido, A. (2005) Spot water markets and risk in water supply, Agricultural Economics, 33, 131-143, DOI: 10.1111/j.1574-0864.2005.00402.x Djordjevic, B. (1995). Akumulacije u okviru rešenja vodoprivredne infrastrukture predviđene Prostornim planom Srbije i nužnost njihove blagovremene zaštite [Accumulations in the

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Water Loss Analysis as an Element of Operation Management of Water Supply System

5. References 1. Kowalski D., Kowalska B., Kwietniewski M., Sygacz-Adamska J.: Analiza bilansu wody oraz awaryjności wybranego systemu dystrybucji wody. Zaopatrzenie w Wodę, jakość i Ochrona Wód, tom II, 2012. 2. Kwietniewski M., Rak J.: Niezawodność infrastruktury wodociągowej i kanalizacyjnej w Polsce. Komitet Inżynierii Lądowej i Wodnej PAN, Warszawa 2010. 3. Lambert A., Hirner W.: Losses from Water Supply Systems: Standard Terminology and Recimmended Performance Measures. International Water Association Blue Pages, 2000. 4. Merc K

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Risk in Water Supply System Crisis Management

References Rak J., Kucharski B.: Zaopatrzenie w wodę w sytuacjach kryzysowych. Konferencja: KMPSP. Wydawnictwo Politechniki Koszalińskiej,. Koszalin-Łazy., s. 268-279, 2004. Rak J., Tchórzewska-Cieślak B.: Review of matrix methods for risk assessment in water supply system. Wydawnictwo Instytutu Technicznego Wojsk Lotniczych. Journal of Konbin, t. 1, z.1, s.67-76, 2006. Rak J., Tchórzewska-Cieślak B.: Metody analizy i oceny ryzyka w systemie zaopatrzenia w wodę. Oficyna

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Water Supply Status in Rural Areas of the Mekong Delta and Development Measures

. United Nations Environmental Programme (UNEP) and Environment and Economics Unit (EEU), Nairobi, Kenya. 1994. [8] RIETBERGEN-McCRACKEN, J. and H. ABAZA. Economic instruments for environmental management: a worldwide compendium of case studies . London: Earthscan Publications, 2000. [9] NGUYEN, T. LAN CHI and D. PHAN. A model of clean water supply and improvement of environmental sanitary conditions in residential clusters in the Mekong Delta, Vietnam. GeoScience Engineering. 2015, 61(4), 9-16. [10] CHEREMISINOFF, N. P. Handbook of water and

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Factors Responsible For Rural Residential Water Supply Shortage In Southeastern Nigeria

References Adewuyi, A.P. 2013. State-local government collaborative partnership in rural infrastructural development in Katsina State, 1999-2102, Nigerian Journal of Social Sciences 9(2) 73–93. Ajao, K. R., Ajimotokan, H. A., Popoola, O. T., Akande, H. F. 2009. Electric energy supply in Nigeria, decentralized energy approach, Cogeneration and Distributed Generation Journal , 24(4), 34–50. Ajayi, J.O., Sonuga, F.A., Aliboh, O.P., Oloke, D.A. 2003. Sustainable portable water supply to Nigerians through conjunctive development of surface and

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