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Fire Sci. Eng. > Volume 27(6); 2013 > Article
Fire Science and Engineering 2013;27(6):15-20.
DOI: https://doi.org/10.7731/KIFSE.2013.27.6.015    Published online December 31, 2013.
표면의 대류열전달계수, 방사율 및 화염 열유속 역해석 연구
윤경범, 박원희
1한국건설생활환경시험연구원
2한국철도기술연구원
Inverse Estimation of Convective Heat Transfer Coefficient, Emissivity and Flame Heat Flux on the Surface
Yoon Kyung-Beom, Park Won-Hee
1Korea Conformity Laborities
2Korea Railroad Research Institute
요약
반발 입자 군집 최적화 알고리즘을 이용하여 시편 표면에서의 대류열전달 계수, 방사율 및 화염에 의한 열유속을 예측하였다. 콘 칼로리미터를 이용하여 여러 열유속 조건 하에서의 방무목 시편의 표면 온도와 질량감소율 및 발화시간을 측정하였다. 본 연구에서 최적화된 대류열전달계수, 방사율 및 화염에 의한 열유속을 이용하여 계산된 표면온도는 실험결과와 각 열유속에 대하여 평균오차가 2% 내로 잘 일치하였다. 본 연구에서 제시한 방법을 이용하여 실험적 방법으로 직접 측정하기 매우 어려운 화염이 발생하는 표면에서 열전달과 관련된 여러 물리량을 구할 수 있다.
Abstract
The convective heat transfer coefficient, emissivity, and flame heat flux on the surface of Duglas fir are estimated by using repulsive particle swarm optimization. The surface temperature, mass loss rate, and ignition time are measured for various incident heat fluxes from a cone heater of the cone calorimeter. The calculated surface temperatures obtained by using the optimized convective heat transfer coefficient, emissivity and flame heat flux on the surface in this study match well with those obtained from the test. The maximum error between the predicted and measured surface temperatures for the three different external heat fluxes is within 2% showing reasonable agreements. The methodology proposed in this study can be used to obtain various values related to heat transfer on a flaming surface that are difficult to measure in experiments.
Key Words: Flame heat flux, Convective heat transfer coefficient, Emissivity, Repulsive particle swarm optimization


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