Experimental study of thin-layer boilover in large-scale pool fires
By performing a series of pool fire experiments, the authors attempt to apply knowledge of thin-layer boilover to the large scale (pool diameter from 1.5 to 6 m). Two commercial hydrocarbons were used: gasoline and diesel. As expected, only in the case of diesel did the phenomenon of thin-layer boil...
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Published in | Journal of hazardous materials Vol. 137; no. 3; pp. 1293 - 1302 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
11.10.2006
Elsevier |
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Abstract | By performing a series of pool fire experiments, the authors attempt to apply knowledge of
thin-layer boilover to the large scale (pool diameter from 1.5 to 6
m). Two commercial hydrocarbons were used: gasoline and diesel. As expected, only in the case of diesel did the phenomenon of
thin-layer boilover occur. Data were used to analyze various features of
thin-layer boilover in fires, particularly its intensity and onset time. A comparison with results published in the literature shows the importance of this study. |
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AbstractList | By performing a series of pool fire experiments, the authors attempt to apply knowledge of
thin-layer boilover to the large scale (pool diameter from 1.5 to 6
m). Two commercial hydrocarbons were used: gasoline and diesel. As expected, only in the case of diesel did the phenomenon of
thin-layer boilover occur. Data were used to analyze various features of
thin-layer boilover in fires, particularly its intensity and onset time. A comparison with results published in the literature shows the importance of this study. By performing a series of pool fire experiments, the authors attempt to apply knowledge of thin-layer boilover to the large scale (pool diameter from 1.5 to 6m). Two commercial hydrocarbons were used: gasoline and diesel. As expected, only in the case of diesel did the phenomenon of thin-layer boilover occur. Data were used to analyze various features of thin-layer boilover in fires, particularly its intensity and onset time. A comparison with results published in the literature shows the importance of this study. By performing a series of pool fire experiments, the authors attempt to apply knowledge of thin-layer boilover to the large scale (pool diameter from 1.5 to 6 m). Two commercial hydrocarbons were used: gasoline and diesel. As expected, only in the case of diesel did the phenomenon of thin-layer boilover occur. Data were used to analyze various features of thin-layer boilover in fires, particularly its intensity and onset time. A comparison with results published in the literature shows the importance of this study. |
Author | Ferrero, Fabio Muñoz, Miguel Arnaldos, Josep Casal, Joaquim Kozanoglu, Bulent |
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Keywords | Boilover intensity Pre-boilover burned mass ratio Onset time Pool fires Hydrocarbon Fire Organic compounds |
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Technol. doi: 10.1080/00102209208947190 contributor: fullname: Inamura – volume: vol. 26 start-page: 167 year: 1999 ident: 10.1016/j.jhazmat.2006.04.050_bib2 article-title: Thin layer boilover of pure or multicomponet fuels contributor: fullname: Garo – volume: 126 start-page: 1373 year: 2001 ident: 10.1016/j.jhazmat.2006.04.050_bib4 article-title: Experimental study of burning rate in hydrocarbon pool fires publication-title: Combust. Flame doi: 10.1016/S0010-2180(01)00262-0 contributor: fullname: Chatris – ident: 10.1016/j.jhazmat.2006.04.050_bib7 |
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Snippet | By performing a series of pool fire experiments, the authors attempt to apply knowledge of
thin-layer boilover to the large scale (pool diameter from 1.5 to 6... By performing a series of pool fire experiments, the authors attempt to apply knowledge of thin-layer boilover to the large scale (pool diameter from 1.5 to 6... By performing a series of pool fire experiments, the authors attempt to apply knowledge of thin-layer boilover to the large scale (pool diameter from 1.5 to... |
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SubjectTerms | Applied sciences Boilover intensity Exact sciences and technology Fires Gasoline Onset time Phase Transition Pollution Pool fires Pre-boilover burned mass ratio Time Factors Transition Temperature Water |
Title | Experimental study of thin-layer boilover in large-scale pool fires |
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