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Application isssues of the semi-markov reliability model

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Języki publikacji
EN
Abstrakty
EN
Predicting the reliability of marine internal combustion engines, for instance, is of particular importance, as it makes it possible to predict their future reliability states based on the information on the past states. Correct reliability prediction is a complex process which consists in processing empirical results obtained from operating practice, complemented by analytical considerations. The process of technical state changes of each mechanical device is stochastic and continuous in states and time, hence the need to divide this infinite set of engine states into a finite number of subsets (classes), which can be clearly and permanently identified using the existing diagnosing system. Using the engine piston-crankshaft system as an example, the article presents a proposal for a mathematical model of reliability which, on the one hand, takes into account random nature of phenomena leading to the damage, and at the same time reveals certain application flexibility and the resultant practical usability.
Słowa kluczowe
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Tom
Strony
55--64
Opis fizyczny
Bibliogr. 10 poz., rys., tab.
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autor
  • Gdańsk University of Technology, 11/12 Narutowicza St., 80 - 233 Gdańsk Poland
Bibliografia
  • 1. Benjamin J.R., Cornell C.A.: Probability theory, mathematical statistics, and decision making theory for engineers (in Polish). WNT, Warszawa 1977.
  • 2. Girtler J.: The semi-Markov model of the process of appearance of sea-going ship propulsion system ability and inability states in application to determining the reliability of these systems. Polish Maritime Research. Volume 20, Issue 4, Pages 18–24, 2013.
  • 3. Girtler J.: The semi-Markov model of energy state changes of the main marine internal combustion engine and method for evaluating its operation during ship voyage. Polish Maritime Research. Volume 18, Issue 4, Pages 36–42, 2011.
  • 4. Grabski F.: Theory of semi-Markov processes of operation of technical objects (in Polish). Zeszyty Naukowe AMW, nr 75A, Gdynia 1982.
  • 5. Piaseczny L.: Technology of repairs of marine internal combustion engines (in Polish). Wydawnictwo Morskie, Gdansk 1992.
  • 6. Rudnicki J.: Preparing a collection of technical and energy states of engine piston-crankshaft systems taking place during engine operation (in Polish). Work done within the framework of the project finances by MNiSW. The research project entitled : „Decision making based control of the process of operation of piston-crankshaft systems in Diesel engines used as main propulsion of sea going vessels, making use of technical diagnostics and taking into account safety and marine environment protection. Gdansk 2010.
  • 7. Rudnicki J.: Formulating requirements concerning operating properties of the diagnostic system for ship main engines, with particular attention focused on the technical state of their piston-crankshaft systems, adapted to control the process of operation of this type of engines in the aspect of ship safety and marine environment protection (in Polish) . Work done within the framework of the project No. N N509 494638finances by MNiSW. The research project entitled : „Decision making based control of the process of operation of piston-crankshaft systems in Diesel engines used as main propulsion of sea going vessels, making use of technical diagnostics and taking into account safety and marine environment protection. Gdansk 2011.
  • 8. Włodarski J.K.: Operating states of marine internal combustion engines (in Polish), WSM Gdynia 2001.
  • 9. RTA 96CB Electronic Instruction & Manual. Hunday Heavy Industries CO Ltd., Ulsan Korea 2010.
  • 10. L32/40 Electronic Instruction & Manual. Hunday Heavy Industries CO Ltd., Ulsan Korea 2010.
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Bibliografia
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