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http://dx.doi.org/10.11112/jksmi.2015.19.1.120

The Flame and Distributed Temperature Restraint Properties of Fire Venetian Blind Louver in Buildings  

Chae, Young-Suk (우송대학교 건축공학과)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.19, no.1, 2015 , pp. 120-127 More about this Journal
Abstract
The purpose of this study is to improve the fire prevention performance using the fire venetian blind louver subjected to burning by fire flame. The investigation is based on testing 2 full scale specimens, which is $3m{\times}3m$ module, $850mm{\times}1,500mm$ open, and $900mm{\times}900mm{\times}175mm$ venetian blind louver. Two louver thickness (1.5 and 2.0mm) were adopted. The specimens were exposed to fire flame temperature levels of ISO834 at the lower surface of the fire venetian blind louver specimens with exposure duration of one hour in Korea Institute of Construction Technology (KICT). It was found from the test results that the values of distributed temperature, decreased for all specimens for protecting to fire flame by venetian blind louver. The results of tests were a good fire prevention performance between in initial to 6 mins. At 60 minutes around ISO 834 fire loading, the percentages of distributed temperature in 500mm and 800mm height ranged between 11 and 10% respectively, regardless of louver thickness. This study, therefore, will improve the fire venetian blind louver for fire protection and prevention performance.
Keywords
Flame restraint; Venetian blind louver; Fire; Building;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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1 Building Construction Law (2005), 2005.5.26.
2 Chae, Y. S., Lim, B. H. (2013), The study of fire venetian blind louver for an apartment balcony, Journal of the Regional Association of Architectural Institute of Korea, 15(3), 95-100.
3 Choi, J. (2008), A Study on the Characteristics and the Disaster Prevention Measures of Incendiary Fire, Journal of Korean Institute of Fire Science & Engineering, 22(5).   과학기술학회마을
4 http://productfind.interiordesign.net/.
5 http://www.archello.com/en.
6 http://www.china-ceiling.com/Case.asp.
7 Jeon, H. K., Choi, Y. S., Choo, H. L. (2010), A Numerical Study for the Atrium Smoke Control by Fire Shutter and Evacuation, Journal of Korean Institute of Fire Science & Engineering, 24(5), 50-59.   과학기술학회마을
8 Jeon, J. P., Jeon, S. M., In, K. H., Rie, D. H. (2010), A study on Improvement of performance criteria for fire door, Proceedings of the Korea Institute of Fire Science and Engineering Conference, 10, 3-6.   과학기술학회마을
9 Kim, D. H., Seo, C. H. (2002), A Survey of the Fire Loads in Primary School, Architectural Institute of KOREA (Structure), 18(9), 149-156.   과학기술학회마을
10 Ko, T. S. (2009), A Study on the Actual Conditions and the Improving Methods of Fire Zones, Journal of Korean Institute of Fire Science & Engineering, 5(1), 18-24.
11 Lee, J. H., Kim, J. H., Choi, J. W. (2012), A Study on The characteristic changes of the air flow by the Fire Compartment in High-rise Building, Proceedings of the Korea Institute of Fire Science and Engineering Conference, 5, 93-96.
12 Overholt, K., http://www.koverholt.com/fds-mesh-size-calc/.
13 Seo, H. W., Sung, S. C., Choi, D. H., Kim, D. H., Park, S. Y. (2010), A Study on the Fire Resistance Performance Evaluation of Fire Dampers, Proceedings of the Korea Institute of Fire Science and Engineering Conference, 4, 90-95.   과학기술학회마을
14 Teo, I. H., An, J. H., In, K. H., Mn, B. Y. (2007), A Comparative Study on the domestic and foreign Performance Criteria of Fire Doors, Fire Shutters and Fire Windows applied to Building Fire Compartment, Proceedings of the Korea Institute of Fire Science and Engineering Conference.   과학기술학회마을