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S. H. Hong, H. S. Kong(2021a), "Measurement of the time taken for initial water discharge according to the number of kinks in the fire hose of the indoor hydrant system." Self-research Report.
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2 |
Ministry of Government Legislation(2019, January 10), "Type approval of fire hose and technical standard for product inspection." Article 2 No. 7-14.
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3 |
Ministry of Government Legislation(2021), "Enforcement decree of the act on fire prevention, installation and maintenance of firefighting facilities, and safety management [Annex 5]." Amended on 1.5.
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4 |
Ministry of Government Legislation(2021, April 1), "Fire safety standards for indoor hydrant system." Article 7(2), Partial Revision.
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5 |
J. B. Kim, C. S. Baek, H. J. Kim(2001), "A study on adhesion test methods for fire hose." J. of Korean Institute of Fire Sci. & Eng., 15(1):66-74.
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6 |
H. S. Kong, J. H. Lee, K. C. Kim(2008), "A study on turning connection nine for function elevation of fire hose." Journal of the Korean Institute of Plant Engineering, 13(2):99-105.
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7 |
National Fire Agency(2019), Fire safety standards for indoor hydrant system (NFSC 102), The amount of water stored in the water source of the indoor hydrant system. p. 33.
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8 |
Y. K. Whang, S. C. Lee(2019), "Study on the pressure loss of hoses in a fire hose reel hydrant." Fire Sci. Eng., 33(2):63-67.
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9 |
H. E. Lee(2020). A study on pressure losses in fire hose in various deployment situations. University of Seoul, pp. 77-80.
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10 |
S. H. Hong, H. S. Kong(2021b), "Analysis of the number of kinks with the fire hose staking method of indoor hydrant system." Self-research Report.
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