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NTIS 바로가기Journal of the convergence on culture technology : JCCT = 문화기술의 융합, v.9 no.6, 2023년, pp.319 - 327
전승덕 (정읍여자고등학교) , 이순범 (군산제일고등학교) , 이재영 (건양사이버대학교 재난안전소방학과)
This study analyzes the risks of explosions of small LPG storage tanks installed at highway rest areas. For this purpose, the ranges of the effect of thermal radiation and overpressure caused by the BLEVE(Boiling Liquid Expansion Vapor Explosion)and VCE(Vapor Cloud Explosion) of a 2900-kg small LPG ...
Today Energy. (2022). A Full Inspection of LPG?bulk crane Tank Lorry by June Next Year.?(https://blog.naver.com/bang6687/222953225663)?
Dong-A Ilbo (2022). Pohang Elementary Schoo?Cafeteria Gas Explosion... 3 Cooks?Injured.(https://www.donga.com/news/article/all/20220104/111077733/1)?
B. C. Go. (2023), Disaster in Daegu, Explosion at?an LPG Station. Korean Institute of Fire?Investigation. pp. 117-130.?URL: https://www.earticle.net/Article/A428243?
U. Y. Jeon. (2015). A Study on the Consequence?Analysis of LPG Small Storage Tank in?Underground. Seoul National University of?Science and Technology. Master's Thesis. p. 44.?
T. I. Han. (2017). A Study of the Possibility of?Chain Explosion in a Small LPG Storage Tank?Assembly. Master's Thesis. p. 2.?
S. D. Seo (2019). Analysis of impact range from BLEVE of small LPG storage tank, Korea?National University of Transportation. Master's?Thesis. Seoul. p. 2,?
S. B. Lee, & H. S. Kong. (2022). Predictive?Analysis of Ranges of Damage Impact to High?School Cafeterias Caused by Boiling Liquid?Expansion Vapor Explosion and Vapor Cloud?Explosion of Small LPG Storage Tanks. Fire &?Safety Research. Vol. 3. pp. 119-135. .?
S. B. Lee, & H. S. Kong. (2022). Predictive?Analysis of Ranges of Damage Impact to High?School Cafeterias Caused by Boiling Liquid?Expansion Vapor Explosion and Vapor Cloud?Explosion of Small LPG Storage Tanks. Fire &?Safety Research. Vol. 3. p. 120.?
Y. M. Jung. (2000). (A) Study on the?Improvement of Safety for LPG Filling Station.?Yonsei University. Master's Thesis. P. 18.?
S. B. Lee, & H. S. Kong. (2022). Predictive?Analysis of Ranges of Damage Impact to High?School Cafeterias Caused by Boiling Liquid Expansion Vapor Explosion and Vapor Cloud?Explosion of Small LPG Storage Tanks. Fire &?Safety Research. Vol. 3. p. 122.?
I. T. Kim, I. W. Kim, & H. O. (2000). A Study?on the Overpressure Estimation of BLEVE.?Journal of the Korean Institution of Gas. Vol. 4.?No. 1. p. 70.?
S. H. Leem, J. R. Lee, & Y. J. Huh. (2008). A?Study on Estimation of Human Damage for?Overpressure by Vapor Cloud Explosion in?Enclosure Using Probit Model. Journal of the?Korean Institution of Gas. Vol. 12, No. 1, p. 43.?
S. L. Lee, & Y. S. Lee. (2003). A Study on the?Probability of BLEVE of Above-ground LP GAS?Storage Tanks Exposed to External Fire. Journal?of the Korean Institution of Gas. Vol. 7. No. 1. p.?19.?
EPA AND NOAAA. (2007). ALOHA(USER'S?MANUAL). p. 20.?
EPA AND NOAAA. (2007). ALOHA(USER'S?MANUAL). p. 22.?
Korea Occupational Safety and Health Agency.?(2012). Guidelines for Calculation of Chemical?Exposure Impact Index (CEI).?(https://www.kosha.or.kr/kosha/index.do)?
H. J. Lee, T. J. Jeong, & J. W. Ko. (2017).?Apply AEGL for Short Time Exposure Using?Regression Curve. Journal of the Korean?Institution of Gas. Vol. 21. No. 5. p. 79.?
EPA AND NOAAA. (2007). ALOHA USER'S?MANUAL. p. 128.?
National Institute of Chemical Safety (2015),?ALOHA User's Manual. p.15.?
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