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Analysis of tank safety with propane-butane on LPG distribution station

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An analysis of the risk of failure in the safety valve – tank with propane-butane (LPG) system has been conducted. An uncontrolled outflow of liquid LPG, caused by a failure of the above mentioned system has been considered as a threat. The main research goal of the study is the hazardous analysis of propane-butane gas outflow for the safety valve – LPG tank system. The additional goal is the development of an useful method to fast identify the hazard of a mismatched safety valve. The results of the research analysis have confirmed that safety valves are basic protection of the installation (tank) against failures that can lead to loss of life, material damage and further undesired costs of their unreliability. That is why a new, professional computer program has been created that allows for the selection of safety valves or for the verification of a safety valve selection in installations where any technical or technological changes have been made.
Słowa kluczowe
Rocznik
Strony
99--102
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
  • University of Life Sciences in Lublin, Akademicka 13 str., 20-950 Lublin, Poland
autor
  • University of Life Sciences in Lublin, Akademicka 13 str., 20-950 Lublin, Poland
autor
  • University of Life Sciences in Lublin, Akademicka 13 str., 20-950 Lublin, Poland
autor
  • University of Life Sciences in Lublin, Akademicka 13 str., 20-950 Lublin, Poland
autor
  • University of Life Sciences in Lublin, Akademicka 13 str., 20-950 Lublin, Poland
  • University of Warmia and Mazury in Olsztyn, Oczapowskiego 2 str., 10-719 Olsztyn, Poland
autor
  • Lublin University of Technology, Nadbystrzycka 38 D str., 20-618 Lublin, Poland
  • Silesian University of Technology, Akademicka 2 A str., 44-100 Gliwice, Poland
autor
  • Silesian University of Technology, Akademicka 2 A str., 44-100 Gliwice, Poland
Bibliografia
  • 1. Szmigielski, M., Zarajczyk, J., Kowalczyk-Juśko, A., Kowalczuk, J., Rydzak, L., Ślaska-Grzywna, B., Krzysiak, Z., Cycan, D. & Szczepanik, M. (2014) Quality of biomass briquettes as stock for thermochemical conversion and syngas production. Przem. Chem. 93(11), 1000–1004.
  • 2. Krzysiak, Z., Bartnik, G., Samociuk, W., Zarajczyk, J., Plizga, K., Rachwał, B., Wierzbicki, S., Krzywonos, L. & Brumercik F. (2017). Explosion hazard analysis at a liquid fuel stadion. Przem. Chem. 96(2), 1032–1035.
  • 3. Łubowska, A. & Nazar, N. (2015). The risk assessment of safe storage of liquid ammonia. Part 1, Storage in a pressurized spherical tank. Przem. Chem. 94(11), 1932–1935.
  • 4. Łubowska, A. & Nazar, N. (2015) The risk assessment of safe storage of liquid ammonia. Pt. 2, Storage in a vessel under pressure. Przem. Chem. 94(12), 2112–2016.
  • 5. Regulation of the Minister of Economy of 10 october 2013 – Dz.U poz. 1479. (in Polish)
  • 6. Law of 27 April 2001 on the Protection of the Environmental. Dz.U nr 62, poz. 6271. (in Polish)
  • 7. Droździel, P. & Krzywonos, L. (2009) The estimation of the reliability of the first daily diesel engine start-up during its operation in the vehicle. Eksploatacja i Niezawodność - Maintenance and Reliabilit 1(41), 4–10.
  • 8. Jedliński, Ł., Caban, J., Krzywonos, L., Wierzbicki, S. &Brumerčík, F. (2015) Journal of Application of vibration signal in the diagnosis of IC engine valve clearance, Journal of Vibroenginee. 17(1) 175–181.
  • 9. Bartnik, G., Pieniak, D., Niewczas, M., Niewczas, A. & Marciniak, A. (2016) Probabilistic model for flexural strength of dental composites used in modeling reliability of the “tooth-dental composite” system. Eksploatacja i Niezawodność - Maintenance and Reliability 1(18), 136–141.
  • 10. Samociuk, W., Krzysiak, Z., Szmigielski, M., Zarajczyk, J., Stropek, Z., Gołacki, K., Bartnik, G, Skic, A. & Nieoczym, A. Modernization of the control system to reduce a risk of severe accidents during non-pressurized ammonia storage. Przem. Chem. 95(5), 1032–1035.
  • 11. Rogalewicz, G. & Bajdur, W. M.: Technique. Informatics. Security Engineering. Scientific Works of the Jan Długosz in Częstochowa t. II, 325–336 (in Polish).
  • 12. http://radom24.pl/artykul/czytaj/23524 access 21.01.2016. (in Polish).
  • 13. Paliwal, G., Agrawal, K., Srivastava, R. K. & Sharma, S. (2014) Domestic liquefied petroleum gas: Are we using a kitchen bomb? Burns. J. Inter. Soc. Burn Injuries 40, 1219–1224.
  • 14. Kai, J., Morganti, A., Tien Mun Foong, A., Michael, J., Brear, A., Gabriel da Silva, B., Yi Yang, A. & Frederick, L. (2013). Dryer: The Research and Motor octane numbers of Liquefied Petroleum Gas (LPG). Fuel. Sci. Technol. Fuel Energy 108 797–811.
  • 15. Andadari, R. K., Mulder, P. & Rietveld, P.: Energy poverty reduction by fuel switching. Impact evaluation of the LPG conversion program in Indonesia. Energy Policy Inter. J. Polit., Eco., Plan., Environ. Soc. Asp. Energy 66, 436–449
  • 16. Raslavičius, L., Keršys, A., Mockus, S., Keršienė, N. & Starevičius, M. (2014) Liquefied petroleum gas (LPG) as a medium-term option in the transition to sustainable fuels and transport. Renew. Sustain. Energy Rev. 32, 513–525
  • 17. Bartnik, G., Krzysiak, Z., Samociuk, W., Łysiak, G., Plizga, K., Szmigielski, M., Nieoczym, A., Kaliniewicz, Z. & Brumercik F. (2017) Documentation of meeting the requirements in the area of technical safety on the example of distribution of liquid fuels. Przem. Chem. 96(5), 1039–1041.
  • 18. Samociuk, W., Krzysiak, Z., Bartnik, G., Skic, A., Kocira, S., Rachwał, B., Bąkowski, H., Wierzbicki, S. & Krzywonos, L. (2017) Analysis of explosion hazard on propane-butane liquid gas distribution stations during self-tankage of vehicles. Przem. Chem. 96/4, 874–879.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9dfb83b3-c1b3-4a6d-8423-4da887b3752a
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