RAS Chemistry & Material ScienceХимическая физика Advances in Chemical Physics

  • ISSN (Print) 0207-401X
  • ISSN (Online) 3034-6126

The peculiarities of a behavior of tanks with compressed and liquefield hydrogen in a fire

PII
S0207401X25040115-1
DOI
10.31857/S0207401X25040115
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 44 / Issue number 4
Pages
97-105
Abstract
An analytical review of investigations dedicated to a behavior of tanks with compressed and liquefied hydrogen in a fire is presented. It was mentioned that the compressed hydrogen is stored as a rule in vessels made of composite materials, and the liquefied hydrogen is stored in double-wall isothermal tanks. The vessel with a compressed hydrogen is destructed after 5-15 min of an action of a fire, if no fire proofing is made for these vessels. A destruction of the vessel made of the composite materials takes place at gas pressures exceeding an initial pressure not more than on 10%. A rupture occurs due to a loss of polymer compound. A fire resistance limit of a such vessel is inversely proportional to an intensity of a thermal action of the fire. But the fire resistance limit of the liquefied hydrogen tank can reach several tens minutes depending on parameters of a thermal isolation. Shock waves, fireballs and fragments of the tanks are the main hazardous factors of the accidents with a rupture of the hydrogen tanks. Sizes of hazardous zones can reach several tens meters depending on the parameters of the tanks. The largest sizes were observed in the case of the fireballs.
Keywords
Date of publication
15.09.2025
Year of publication
2025
Number of purchasers
0
Views
5

References

  1. 1. Byoungjik Park, Yangkyun Kim. // Int. J. Hydrogen Energy. 2023. V. 48. P. 34987.
  2. 2. Гордиенко Д.М., Шебеко Ю.Н. // Безопасность труда в промышленности. 2022. № 2. С. 7.
  3. 3. Шебеко Ю.Н. // Пожарная безопасность. 2020. № 4. С. 36.
  4. 4. Гордиенко Д.М., Шебеко Ю.Н. // Пожаровзрывобезопасность. 2022. Т. 31. № 2. С. 41.
  5. 5. Шебеко Ю.Н. // Пожаровзрывобезопасность. 2020. Т. 29. № 4. С. 42.
  6. 6. Шебеко Ю.Н., Болодьян И.А. // Вести газовой науки. Научно-технический сборник. 2022. № 2(51). С. 151.
  7. 7. Шебеко Ю.Н. // Пожарная безопасность. 2023. № 1. С. 17.
  8. 8. Тереза А.М., Агафонов Г.Л., Андержанов Э.К.и др. // Хим. физика. 2023. Т. 42. № 3. С. 70.
  9. 9. Трошин К.Я., Рубцов Н.М., Цветков Г.И., Черныш В.И., Шамшин И.О. // Хим. физика. 2023. Т. 42. № 3. С. 79–86.
  10. 10. Сумской С.И., Софьин А.С., Зайнетдинов С.Х., Лисанов М.В., Агапов А.А. // Хим. физика. 2023. Т. 42. № 3. С. 63–69.
  11. 11. Васильев А.А., Васильев В.А. // Физика горения и взрыва. 2024. Т. 60. № 5. С. 30–39.
  12. 12. Halm D., Fouillen F., Lain E. et al. // Int. J. Hydrogen Energy. 2017. V. 42. P. 20056.
  13. 13. Chuanchuan Shen, Li Ma, Gai Huang et al. // J. Loss Prev. Process Ind. 2018. V. 55. P.223.
  14. 14. Kashkarov S., Makarov D., Molkov V. // Int. J. Hydrogen Energy. 2018. V. 43. No. 21. P. 10185.
  15. 15. Zalosh R. // Proc. 5th Int. Sem. on Fire and Explosion Hazards. Edinburgh, 2008. P.149.
  16. 16. Kashkarov S., Li Z., Molkov V. // Int. J. Hydrogen Energy. 2020. V. 45. P. 2429.
  17. 17. Dadashzadeh M., Kashkarov S., Makarov D., Molkov V. // Ibid. 2018. V. 43. P. 6462.
  18. 18. Molkov V., Kashkarov S. // Ibid. 2015. V. 40. No. 36. P. 12581.
  19. 19. Molkov V., Dery W. // Ibid. 2020. V. 45. P. 31289.
  20. 20. Blanc-Vannet P., Jallais S., Fuster B., Fouillen F., Halm D. // Ibid. 2019. V.44. P.9100.
  21. 21. Molkov V., Dadashzadeh M., Kashkarov S., Makarov D. // Ibid. 2021. V.46. P.36581.
  22. 22. Kim Y., Makarov D., Kashkarov S., Joseph P., Molkov V. // Ibid. 2017. V.42. No.11. P.7297.
  23. 23. Ustolin F., Paltrinieri N., Landucci G. // J. Loss Prev. Process Ind. 2020. V. 68. P. 104323.
  24. 24. Pehr K. // Int. J. Hydrogen Energy. 1996. V. 21. P. 387.
  25. 25. Roberts A.F. // Fire Safety J. 1982. V.4. P.197.
  26. 26. Betteridge S., Phillips L. Symposium series no.160. Hazards 25. Shell, 2015.
  27. 27. Wingerden K., Kluge M., Habib A.K., Ustolin F., Paltrinieri N. // Chem. Eng. Trans. 2022. V. 90. P. 547.
  28. 28. Cirrone D., Makarov D., Molkov V. // Int. J. Hydrogen Energy. 2023. V. 48. P. 8716.
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