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Analysis of risk and failure scenarios in water supply system

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Water supply system is complicated technical system which belongs to underground urban infrastructure. Its accurate functioning determines everyday live stability of citizens. Risk analysis is a key phase of the process of water supply safety management. The aim of this paper is to present new propose of methods for risk of the first type (associated with quantity of supplied water) and the risk of the second type (associated with quality of supplied water) analyses in water supply system. The paper contains the description of matrix methods for risk analyses and methods describing cause-and-effect relationship of failure events (fault tree analysis).
Rocznik
Strony
11--18
Opis fizyczny
Bibliogr. 22 poz., tab., wykr.
Twórcy
autor
  • Rzeszow University of Technology
autor
  • Rzeszow University of Technology
  • Rzeszow University of Technology
Bibliografia
  • [1] Asoka, J. (2008). Application of a risk management system to improve drinking water safety. Journal of Water and Health. 6, 547-557.
  • [2] Aven, T. (2010). A conceptual framework for risk assessment and risk management. Journal of Polish Safety and Reliability Association. 2, 1527.
  • [3] Bernstein, P.L. (1997). Przeciw bogom – niezwykłe dzieje ryzyka. Wydawnictwo WIGPress. Warszawa.
  • [4] Boryczko, K., Eid, M. & Piegdoń I. (2014). Collective water supply systems risk analysis model by means of RENO software, Safety, Reliability and Risk Analysis: Beyond the Horizon, Van Gelder P.H.A.J.M. Steenbergen R.D.J.M., Miraglia S., Vrouwenvelder A.C.W.M., Editor. 2014, Taylor & Francis Group, London. 1987-1992.
  • [5] Boryczko, K. & Tchórzewska-Cieślak, B. (2013). Analysis and assessment of the risk of lack of water supply using the EPANET program, Environmental Engineering IV, Dudzińska M. R. Pawłowski L., Pawłowski A., Editor. 2013, Taylor & Francis Group, London. 63-68.
  • [6] Ferwtrell, L. & Bartram, J. (2001). Water Quality: Guidelines Standards Health. Assessment of Risk Management for Water Related Infection Disease. World Health Organization Series. IWA Publishing. London.
  • [7] Haimes, Y.Y. (2009). On the Complex Definition of Risk. A Systems-Based Approach. Risk Analysis 29, 1647-1654.
  • [8] Hrudey, S.E. (2001). Drinking water quality – a risk management approach. Water 26, 29-32.
  • [9] Kaplan, S. & Garrick, B.J. (1981). On the quantative definition of risk. Risk Analysis 1, 1127.
  • [10] Kołowrocki, K. & Smalko, Z. (2011). Safety and reliability of a three-state system at variable operation conditions. Scientific problems of machines operation and maintenance 2, 47-54.
  • [11] Mayr, E., Lukas, A., Aichlseder, W. & Perfler, R. (2012). Experiences and lessons learned from practical implementation of a software-supported Water Safety Plan (WSP) approach. Water Science & Technology: Water Supply 12, 101108.
  • [12] Oesterholt, F., Medema, G., Van Der Kooij, D. & Martijnse, G. (2007). Health risk assessment of non-potable domestic water supplies in the Netherlands. Journal of Water Supply: Research and Technology 56, 171-179.
  • [13] Porto, M. (2004). Water and Ethics, Human Health and Sanitation. United Nations Educational. Saint-Denis.
  • [14] Rak, J. (2005). Podstawy bezpieczeństwa systemów zaopatrzenia w wodę. Komitet InŜynierii Środowiska PAN. Lublin.
  • [15] Rak, J. & Tchórzewska-Cieślak, B. (2006). Fiveparametric matrix to estimate the risk connected with water supply system operation. Environment Protection Engineering 2, 37-46.
  • [16] Sadiq, R., Kleiner, Y. & Rajani, B. (2004). Aggregative risk analysis for water quality failure in distribution networks. Journal of Water Supply Research and Technology: AQUA 53, 241-261.
  • [17] Sadiq, R., Kleiner, Y. & Rajani, B. (2007). Water quality failures in distribution networks-risk analysis using fuzzy logic and evidentail reasoning. Risk Analysis 27, 1381-1394.
  • [18] Tchórzewska-Cieślak, B. (2011). Metody analizy i oceny ryzyka awarii podsystemu dystrybucji wody. Oficyna Wydawnicza Politechniki Rzeszowskiej. Rzeszów.
  • [19] Tchórzewska Cieślak, B., Boryczko, K. & Eid, M. (2012). Failure scenarios in water supply system by means of fault tree analysis, Advances in Safety, Reliability and Risk Management, Grall A. Bérenguer Ch., Guedes Soares C., Editor, Taylor & Francis Group, London. p. 2492-2499.
  • [20] United States Environmental Protection Agency (2006). Decision-Support tools for predicting the performance of water distribution and wastewater collection systems. nr EPA/600/R-02/029. Washington, D.C.
  • [21] Zimoch, I. & Łobos, E. (2012). Comprehensive interpretation of safety of wide water supply systems. Environment Protection Engineering 38, 107-117.
  • [22] Zio, E. (2007). An introduction to the basics of reliability and risk analysis. Series on Quality, Reliability and Engineering Statistics. World Scientific Publishing Co. Pte. Ltd. Singapure.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-998eb2b5-7aae-44f5-90cc-7e4fdca1f6c8
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