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Modelling reliability of water supply network

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The operation process of the complex technical system is considered and its operation states are introduced. The semi-Markov process is used to construct a general probabilistic model of the considered complex technical system operation processes. Further, a general reliability analytical model of complex two-state technical systems related to their operation processes is constructed. An exemplary application of this model to a simplified fragment of the main water supply network operating at variable conditions is presented as well.
Słowa kluczowe
Rocznik
Strony
125--134
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
  • Maritime University, Gdynia, Poland
  • Rzeszow University of Technology, Rzeszow, Poland
autor
  • Rzeszow University of Technology, Rzeszow, Poland
Bibliografia
  • [1] Ferreira, F. & Pacheco, A. (2007). Comparison of level-crossing times for Markov and semi-Markov processes.Statistics & Probability Letters, 77, 2, 151-157.
  • [2] Glynn, P. W.& Haas, P. J. (2006). Laws of large numbers and functional central limit theorems for generalized semi-Markov processes. Stochastic Model, 22, 2, 201-231.
  • [3] Grabski, F. (2015). Semi-Markov Processes: Applications in Systems Reliability and Maintenance. Elsevier.
  • [4] Guze, S., Kołowrocki, K. & Soszyńska, J. (2008). Modelling environment and infrastructure influence on reliability and operation processes of port transportation systems. Summer Safety & Reliability Seminars. Journal of Polish Safety and Reliability Association, 2, 1, 179-188.
  • [5] Habibullah, M. S., Lumanpauw, E., Kołowrocki, K., Soszyńska, J. & Ming, N. G. (2009). A computational tool for general model of industrial systems. operation processes. Electronic Journal of Reliability & Risk Analysis: Theory & Application, 2, 4, 181-191.
  • [6] Hotloś, J. (2007). Ilościowa ocean wpływu wybranych czynników na parametry i koszty eksploatacyjne sieci wodociągowych. Monografia, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław 2007,
  • [7] Kołowrocki, K. (2004). Reliability of Large and Complex Systems. Elsevier, Amsterdam – Boston - Heidelberg - London - New York - Oxford - Paris - San Diego - San Francisco - Singapore - Sydney - Tokyo.
  • [8] Kołowrocki, K. & Soszyńska, J. (2009). Modelling environment and infrastructure influence on reliability and operation process of port oil transportation system. Electronic Journal of Reliability & Risk Analysis: Theory & Application, 2, 3, 131-142.
  • [9] Kołowrocki, K. & Soszynska, J. (2010). Reliability modeling of a port oil transportation system’s operation processes. International Journal of Performance Engineering, 6, 1, 77-87.
  • [10] Kołowrocki, K. & Soszynska, J. (2010). Reliability, availability and safety of complex technical systems: modelling - identification - prediction - optimization. Summer Safety & Reliability Seminars. Journal of Polish Safety and Reliability Association, 4(1):133-158.
  • [11] Kołowrocki, K. & Soszyńska-Budny, J. (2011). Reliability and Safety of Complex Technical Systems and Processes: Modeling-Identification - Prediction-Optimization, London, Dordrecht, Heildeberg, New York, Springer.
  • [12] Kwietniewski, M., Kłos-Trębaczkiewicz, H., & Roman, M. (1993). Niezawodność wodociągów i kanalizacji. Arkady, Warszawa.
  • [13] Kwietniewski, M. & Rak, J. (2010). Niezawodność infrastruktury wodociągowej i kanalizacyjnej w Polsce. Studia z zakresu inżynierii, Polska Akademia Nauk, Warszawa.
  • [14] Limnios, N. & Oprisan, G. (2005). Semi-Markov Processes and Reliability.Birkhauser, Boston.
  • [15] Mercier, S. (2008). Numerical bounds for semi-Markovian quantities and application to reliability.Methodol and Comput in ApplProbab 10, 2, 179-198.
  • [16] Rak, J. (2009). Selected problems of water supply safety. Environment Protection Engineering, 35, 2, 23-28.
  • [17] Rak, J. & Tchórzewska-Cieślak, B. (2013). Ryzyko w eksploatacji systemów zbiorowego zaopatrzenia w wodę. Wydawnictwo Seidel-Przywecki Sp. z o. o.
  • [18] Soszyńska, J. (2007). Systems reliability analysis in variable operation conditions. PhD Thesis, Gdynia Maritime University-System Research Institute Warsaw, (in Polish).
  • [19] Soszyńska, J., Kołowrocki, K., Blokus-Roszkowska, A. & Guze, S. (2010). Prediction of complex technical systems operation processes.Summer Safety & Reliability Seminars. Journal of Polish Safety and Reliability Association, 4, 2, 379-510.
  • [20] Tchórzewska-Cieślak, B. (2009). Water supply system reliability management. Environmental Protection Engineering, 35, 2, 29-35.
  • [21] Tchórzewska-Cieślak, B., Boryczko, K. & Piegdoń, I. (2015). Possibilistic risk analysis of failure in water supply network. Safetyand Reliability: Methodology and Applications Nowakowski - et al. (Eds), Taylor &Francis Group, London. 1473-1480.
  • [22] Tchórzewska-Cieślak, B., Piegdoń, I. & Szpak, D. (2014). Water supply of urban agglomeration in crisis situation.Summer Safety & Reliability Seminars. Journal of Polish Safety and Reliability Association 5, 1, 143-155.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-17a3bfb3-3dc1-4ea9-a156-864b5a4b6482
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