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Simulation-based training in fire prevention and fire-fighting of scavenge air receivers fires

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article presents topics concerning fire hazards during the use of low-speed diesel engines in marine vehicles. The causes and effects of fires in the spaces of scavenge air receivers in marine diesel engines are presented. Methods to prevent and fight these fires are shown, including the operating procedures required from ship engine room operators. The possibility of training personnel to apply the abovementioned procedures during operation using simulations of a Kongsberg MC-90 IVship engine room is presented. Simulations were conducted which included a fire in a scavenge air receiver occurring during the operation of a MAN B&W 5L90MC main engine, with loads corresponding to 50% and 100% of the machine’s recommended setting.
Wydawca
Rocznik
Strony
100--111
Opis fizyczny
Bibliogr. 25 poz, rys., tab.
Twórcy
  • Maritime University of Szczecin, Poland
  • Carnival Corporation & plc, USA
  • BP plc, United Kingdom
Bibliografia
  • [1] Bejger, A., Chybowski, L., Gawdzińska, K., 2018. Utilising elastic waves of acoustic emission to assess the condition of spray nozzles in a marine diesel engine, Journal of Marine Engineering and Technology, DOI: 10.1080/20464177.2018.1492361
  • [2] Bistrović, M., Ristov, P., Komorčec, D., 2017. Prediction of potential fire hot spots by using a model based on a computerized real - time view with IR cameras on ships, Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 50(122), 23-29, DOI: 10.17402/212
  • [3] Chybowski, L., Gawdzińska, K., Laskowski, R., 2019. Assessing the Unreliability of Systems during the Early Operation Period of a Ship - A Case Study, Journal of Marine Science and Engineering, 7(7), 213:1-12, DOI: 10.3390/jmse7070213
  • [4] Chybowski, L., Gawdzińska, K., Ślesicki, O., Patejuk, K., Nowosad, G., 2015. An engine room simulator as an educational tool for marine engineers relating to explosion and fire prevention of marine diesel engines, Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 43(115), 15-21, DOI: 10.17402/034
  • [5] Chybowski, L., Kazienko, D., 2019. The Development of an Explosion Protection System in the Starting Air Manifold of a High Power Engine. System Safety: Human - Technical Facility - Environment, 1(1), 26–34, DOI: 10.2478/czoto-2019-0004
  • [6] Chybowski, L., Grządziel, Z.,Gawdzińska, K., 2018. Simulation and Experimental Studies of a Multi-Tubular Floating Sea Wave Damper, Energies, 11(4), 1012, DOI: 10.3390/en11041012
  • [7] Cieślak, A., Jacek, D., Górski, M., Dziubiński, M., Kosmowski, K., Markowski, A., Żyłła, R., 2000. Zapobieganie stratom w przemyśle (Adam S. Markowski, ed.), Łódź.
  • [8] Gawdzińska, K., Chybowski, L., Nabiałek, M., Szymański, P., 2019. A Study of Metal-Ceramic Composite Foams Combustibility, Acta Physica Polonica A, 135(2), 304-307, DOI: 10.12693/APhysPolA.135.304
  • [9] Gawdzińska, K., Chybowski, L., Przetakiewicz, W., 2017. Study of Thermal Properties of Cast Metal- Ceramic Composite Foams, Archives of Foundry Engineering, 17(4), DOI: 10.1515/afe-2017-0129
  • [10] Gawdzińska, K., Kwiecińska, B., Przetakiewicz, W., Pelczar, M., 2015. Przyczyny wypadków i pożarów na statkach morskich, Zeszyty Naukowe Akademii Morskiej w Gdyni, 91, 21-29.
  • [11] Kaczyński, P., Ptak, M., A. O. Fernandes, F., Chybowski, L., Wilhelm, J., J. Alves de Sousa, R., 2019. Development and Testing of Advanced Cork Composite Sandwiches for Energy-Absorbing Structures, Materials, 12(5), 697, DOI: 10.3390/ma12050697
  • [12] Karliński, J., Ptak, M., Chybowski, L., 2019. A Numerical Analysis of the Working Machine Tyre Inflation Process to Ensure Operator Safety, Energies, 12(15), 2971, DOI: 10.3390/en12152971
  • [13] Karliński, J., Ptak, M., Działak, P., 2014a. Assessment of Safety Cages for Tire Replacement and Inflation, Automotive Safety Conference, Rajeckie Teplice.
  • [14] Karliński, J., Ptak, M., Działak, P., 2014b. Ocena bezpieczeństwa osłon do pompowania kół, Transport Przemysłowy i Maszyny Robocze, 2, 153-158.
  • [15] Kongsberg Maritime, 2005. Engine Room Simulator, ERS-L11 MAN B&W 5L90MC-VLCC, Version MC90-IV.
  • [16] Krystosik-Gromadzińska, A., 2016. Engine room fire safety. Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 47(119), 29-35, DOI: 10.17402/145
  • [17] Krystosik-Gromadzińska, A., 2019. Affordable hybrid thermography for merchant vessel engine room fire safety, Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 57(129), 21-26, DOI: 10.17402/322
  • [18] Laskowski, R., Chybowski, L., Gawdzińska, K., 2015. An engine room simulator as a tool for environmental education of marine engineers, Advances in Intelligent Systems and Computing, 354, DOI: 10.1007/978-3-319-16528-8_29
  • [19] MAN B&W Diesel A/S, 2013. MAN B&W 50-90 MC/MCE Instruction Manual, Copenhagen.
  • [20] Marine Diesels., 2011. Operational Information Scavenge Fires. Retrieved August 17, 2019,fromhttp://www.marinediesels.info/2_stroke_engine_parts/Other_info/scavenge_fires.htm
  • [21] Nozdrzykowski, K., Chybowski, L., 2019. A Force-Sensor-Based Method to Eliminate Deformation of Large Crankshafts during Measurements of Their Geometric Condition, Sensors, 19(16), 3507, DOI: 10.3390/s19163507
  • [22] Strojecki, S., 2011. Characteristics of methods preventing and extinguishing fires in scavenge areas of low-speed main engines, Maritime University of Szczecin.
  • [23] Ubowska, A., Szczepanek, M., 2016. Engine rooms fire safety - fire-extinguishing system requirements, Scientific Journals of the Maritime University of Szczecin, Zeszyty Naukowe Akademii Morskiej w Szczecinie, 48(120), 51-57, DOI: 10.17402/175
  • [24] Ulewicz, R.,Mazur, M., 2013. Fatigue Testing Structural Steel as a Factor of Safety of Technical Facilities Maintenance, Production Engineering Archives, 1/1, 32-34, DOI: 10.30657/pea.2013.01.10
  • [25] Ulewicz, R., Nový, F., Novák, P., Palček, P., 2019. The investigation of the fatigue failure of passenger carriage draw-hook, Engineering Failure Analysis, 104, 609-616, DOI: 10.1016/j.engfailanal.2019.06.036
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-109e7357-790e-41b5-aec5-884fdaa91d31
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