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Explosive Formation and Spreading of Water-Spray Cloud - Experimental Development and Model Analyses

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Języki publikacji
EN
Abstrakty
EN
The paper presents results of experimental investigations and model analysis concerning the expansion of explosively produced water-spray cloud. The regular shape of water-spray cloud produced by a charge placed in a bag flled with water is attained. Effective dispersion of bags containing 600 up to 1500 litres of water is attained. The rise and deceleration of external zone of water-spray cloud is described analytically. The parameters of pressure feld evolving around the explosively formed spray cloud were registered.
Twórcy
  • Nicolaus Copernicus University, Collegium Medicum, 15 Jagiellońska St., 85-067 Bydgoszcz, Poland, stefan@fzyka.umk.pl
Bibliografia
  • [1] Herterich O., Water as an extinguishing agent, Alfred Hűthig Publishing Company, Heidelberg 1960.
  • [2] Jones A., Nolan P.F., Discussions on the use of fine water sprays or mists for fire suppression, Journal of Loss Prevention in the Process Industries, 1995, 8, 17-22.
  • [3] Lebecki K., Śliż J., Cybulski K., Dyduch Z., Efficiency of triggered barriers in dust explosion suppression in galleries, ibid., 2001, 14, 489-494.
  • [4] Teie W., Firefighter’s handbook of wildland firefighting, Dear Valley Press, Recue CA, 1994.
  • [5] Kuhrt E., Knollenberg J., Martens V., Annals of Burns and Fire Disasters, 2001, 14, 151.
  • [6] Liu Z., Kim A.K., Carpenter D., Extinguishment of large cooking oil pool fires by the use of water mist systems, in: Combustion Institute/Canada Section, Spring Technical Meeting, May 9-12, 2004.
  • [7] Dierdorf D., Hawk J., Blast Initiated Deluge System. An Ultra-High-Speed Fire Suppression System, Air Force Research Laboratory Preprint: AFRL-ML-TY-TP- 2006-4511, 2006.
  • [8] Dygdała R.S., Stefański K., Papliński A., Lewandowski D., Kaczorowski M., Śmigielski G., Physical Foundations of Water Spray Production Using Explosive Method, 4th International Conference IPOEX, Ustroń – Jaszowiec, June 04-06 2007, p. 52.
  • [9] Papliński A., Dygdała R.S., Kaczorowski M., Lewandowski D., Śmigielski G., Stefański K., Model analysis of explosive driving fragmentation of the liquid layer, Scientific Aspects of Armament & Safety Technology, vol. I, Military University of Technology, Warszawa 2008, 95-104.
  • [10] Emulint®, NITROERG S.A., 42-693 Krupski Młyn, ul. Zawadzkiego 1, http:// www.nitroerg.pl
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT1-0034-0038
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