![]() |
Measurements of the Heat Release Rate and Fire Growth Rate of Combustibles for the Performance-Based Design - Focusing on the Combustibles in Residential and Office Spaces
Nam Dong-Gun, Hwang Cheol-Hong
Fire Sci. Eng. 2017;31(2):29-36. Published online 2017 Apr 30 DOI: https://doi.org/10.7731/KIFSE.2017.31.2.029
|
Citations to this article as recorded by
Fire Load of Combustibles in Studio-type Housing
Euy-Hong Hwang, Dong-Gun Nam
International Journal of Fire Science and Engineering.2024; 38(1): 20. CrossRef Quantitative Comparison of Maximum Heat Release Rates of Wood Combustibles in Open and Compartment Fire Environments
Hong-Seok Yun, Cheol-Hong Hwang
Fire Science and Engineering.2023; 37(1): 43. CrossRef Review of Parameters Correlated with the Maximum Heat Release Rate in Flames of Polyurethane Foams of Various Cuboid Shapes
Jung-Wook Park, Ho-Sik Han, Cheol-Hong Hwang
Fire Science and Engineering.2022; 36(6): 62. CrossRef An Experimental Study on the Combustion Characteristics of Major Combustible Materials in Office Buildings
Byeongheun Lee, SeungHyun Jin, DongEun Kim, Youngjin Kwon
Journal of the Korean Society of Hazard Mitigation.2020; 20(1): 273. CrossRef A Study on the Heat Release Characteristics of Fire Load for Performance Based Design of Multiplexes: A Focus on the Heat Release Rate and Fire Spread Rate of Cinema Seats
Dong-Gun Nam, Hyo-Yeon Jang, Cheol-Hong Hwang, Ohk-Kun Lim
Fire Science and Engineering.2020; 34(1): 11. CrossRef Evaluation of Design Fire Curves for Single Combustibles in a Cinema Complex
Hyo-Yeon Jang, Cheol-Hong Hwang, Chang Bo Oh, Dong-Gun Nam
Fire Science and Engineering.2020; 34(3): 18. CrossRef
|