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Fire Sci. Eng. > Volume 32(2); 2018 > Article
Fire Science and Engineering 2018;32(2):7-16.
DOI: https://doi.org/10.7731/KIFSE.2018.32.2.007    Published online April 30, 2018.
FDS와 CFAST를 이용한 액체 풀화재의 수정된 디자인 화재곡선 평가 연구
백빛나, 오창보, 이치영
1부경대학교 안전공학과
2부경대학교 안전공학과
3부경대학교 소방공학과
Evaluation of Modified Design Fire Curves for Liquid Pool Fires Using the FDS and CFAST
Baek Bitna, Oh Chang Bo, Lee Chi Young
1Dept. of Safety Engineering, Pukyong National University
2Dept. of Safety Engineering, Pukyong National University
3Dept. of Fire Protection Engineering, Pukyong National University
요약
본 연구에서는 화재 시뮬레이션에 사용하기 위해 제안된 기존의 디자인 화재곡선을 일부 수정한 디자인 화재곡선을 제안하였다. ISO 9705 구획실 내 형성된 헵탄과 옥탄 풀화재를 대상으로 기존에 제안된 1-stage 디자인 화재곡선과 수정된 2-stage 디자인 화재곡선을 입력조건으로 적용하여 FDS와 CFAST를 이용한 시뮬레이션을 수행하고 실험결과와 비교하였다. FDS와 CFAST 시뮬레이션 결과에서 온도와 $O_2$, $CO_2$ 농도에 대해서 전체적으로 2-stage 디자인 화재곡선이 1-stage 디자인 화재곡선보다 잘 예측하였으며, 특히 화재 초기 성장단계에서 온도에 대한 예측은 2-stage 디자인 화재곡선의 결과가 더 합리적임을 확인하였다. 구획실 내 온도변화에 대한 FDS와 CFAST 시뮬레이션 결과는 상층부에 대해서는 비교적 합리적으로 예측하였고 두 계산결과에 차이가 크지 않았지만 하층부에 대해서는 두 계산 모두 너무 낮게 예측하였으며 두 계산결과에도 차이가 크게 나타나는 것을 알 수 있었다.
Abstract
In this study, the previous design fire curve for fire simulation was modified and re-suggested. Numerical simulations with the FDS and CFAST were performed for the n-heptane and n-octane pool fires in the ISO 9705 compartment to evaluate the prediction performances of the previous 1-stage and modified 2-stage design fire curves. The numerical results were compared with the experimental temperature and concentrations of $O_2$ and $CO_2$. The FDS and CFAST simulations with the 2-stage design fire curve showed better prediction performance for the variation of temperature and major species concentration than the simulations with 1-stage design fire curve. Especially, the simulations with the 2-stage design fire curve agreed with the experimental temperature more reasonably than the results with the 1-stage design fire curve. The FDS and CFAST simulations showed good prediction performance for the temperature in the upper layer of compartment and the results with the FDS and CFAST were similar to each other. However, the FDS and CFAST showed poor and different prediction performance for the temperature in the lower layer of compartment.
Key Words: Design fire curve, Fire Dynamics Simulator (FDS), Consolidated Model of Fire growth and Smoke Transport (CFAST), Liquid fuel fire, Heptane, Octane


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