Acknowledgement
This study is a revision and supplementation of the content of the 2022 degree.
References
- National fire agency statistical year book [Internet]. Sejong (Korea): National fire agency. 2020 Jul 9. Available from: https://www.nfds.go.kr/stat/general.do
- Sim SR, Ryu DW. The effect of surface treatment materials on the carbonation resistance of fiber-mixed high strength concrete in fire damage. Journal of the Architectural Institute of Korea. 2021 Sep;37(9):199-207. https://doi.org/10.5659/JAIK.2021.37.9.199
- Architectural institute of Japan. Diagnosis and repair mothods of file-damager buildings. Tokyo (Japan): Architectural institute of Japan; 2009. 207 p.
- Kang H, Kweon OS. Analysis of problems in the heating temperature estimation method by discoloration of fire-damaged concrete. Journal of the Korean Society of Hazard Mitigation; 2020 Dec;20(6):127-33. https://doi.org/10.9798/KOSHAM.2020.20.6.127
- Kim JH. Recovery of the performance of the high strength concrete subjected to high temperature depending on repair materials [master thesis]. Cheongju (Korea): Cheongju university; 2014. 151 p.
- Byun YH, Ryu DW. An experimental study on the diagnosis and evaluation of damage characteristics of fire damaged concrete by strength level: In relation to carbonation depth. Journal of the Korean Society Of Hazard Mitigation. 2017 Dec;17(6):19-27. https://doi.org/10.9798/KOSHAM.2017.17.6.19
- Lee JW, Choi GH, Hong KP. A study on the thermal properties and the heat transfer in concrete exposed to high temperature. Journal of the Architectural Institute of Korea Structure & Construction. 2007 Dec;23(12):51-8.
- Lim GS, Han JH, Hyun SY, Kim j, Han MC, Han CG. Assesment of impaired depth due to fire of mock-up concrete with 21mpa using drying method after water immersion. Proceedings of the Korean Institute of Building Construction Conference. 2021 May 20-21; Jeju, Korea. Seoul (Korea): the Korea Institute of Building Construction; 2021. p. 241-2.
- Lee SH, Kim DH, Choi DH. An explanation of fire resistance performance management standard for high strength concrete. Magazine of the Korea Concrete Institute. 2008 Sep;20(5):22-5. https://doi.org/10.22636/MKCI.2008.20.5.22
- Tae SH, Lee BK. Microstructure characteristics of concrete exposed to high temperatute. Journal of the Fire Science and Engineering. 1998 Dec;12(4):31-40.
- Lim GS, Han SH, Hyun SY, Kim j, Han MC, Han CG. Analysis of fire damaged concrete Ca(OH)2 by heating temperature using scanning electron microscope and x-ray diffraction. Proceedings of the Korean Institute of Building Construction Conference; 2022 Nov 10-11; Busan, Korea. Seoul (Korea): the Korea Institute of Building Construction; 2022. p. 149-50.