The Evolving Temperature Field in a 1 m Methanol Pool Fire.

IF 1.9 4区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY Journal of Fire Sciences Pub Date : 2021-01-01 DOI:10.1177/07349041211019636
Jian Chen, Kunhyuk Sung, Zhigang Wang, Wai Cheong Tam, Ki Yong Lee, Anthony Hamins
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Abstract

Thin filament pyrometry is used to measure the time-varying temperature field in a 1 m methanol pool fire. A digital camera with optical filters and zoom lens recorded the emission intensity of an array of 12 μm Silicon-Carbide filaments oriented horizontally at various heights across the steadily burning pool fire. A 50 μm diameter thermocouple measured the temperature at locations corresponding to the filament positions. A correlation was developed between the local probability density functions of the thermocouple time series measurements corrected for radiation and thermal inertia effects and the camera grayscale pixel intensity of the filaments. A regression analysis yields the local mean temperature and its variance. The time series of the temperature field is transformed into average values during consecutive phases of the fire's puffing cycle, providing quantitative insight into the complex and dynamic structure of a turbulent fire.

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1m甲醇池火灾的演变温度场
细丝高温计用于测量1m甲醇池火灾中的时变温度场。一台带滤光器和变焦镜头的数码相机记录了一组12µm碳化硅丝的发射强度,这些丝在稳定燃烧的池火中以不同高度水平定向。直径为50µm的热电偶测量灯丝位置对应位置的温度。针对辐射和热惯性效应校正的热电偶时间序列测量的局部概率密度函数与灯丝的相机灰度像素强度之间建立了相关性。回归分析得出局部平均温度及其方差。在火灾膨胀周期的连续阶段,温度场的时间序列被转换为平均值,从而定量了解湍流火灾的复杂动态结构。
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来源期刊
Journal of Fire Sciences
Journal of Fire Sciences 工程技术-材料科学:综合
CiteScore
4.00
自引率
0.00%
发文量
14
审稿时长
2.5 months
期刊介绍: The Journal of Fire Sciences is a leading journal for the reporting of significant fundamental and applied research that brings understanding of fire chemistry and fire physics to fire safety. Its content is aimed toward the prevention and mitigation of the adverse effects of fires involving combustible materials, as well as development of new tools to better address fire safety needs. The Journal of Fire Sciences covers experimental or theoretical studies of fire initiation and growth, flame retardant chemistry, fire physics relative to material behavior, fire containment, fire threat to people and the environment and fire safety engineering. This journal is a member of the Committee on Publication Ethics (COPE).
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