Temporally Resolved Radiation Spectra From a Sooting, Turbulent Pool Fire

S. Kearney
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引用次数: 7

Abstract

Infrared radiation spectra from a 1-m diameter, JP-8-fueled, liquid pool fire in nominally quiescent surroundings have been acquired using a novel IR spectrometer. Data were acquired at a rate of 390 spectra/sec allowing for a time-resolved description of the radiation from the fully turbulent fire plume. Results are discussed in terms of an effective homogeneous pathlength and both gray and nongray spectral models, of which the gray model surprisingly fits the data in the soot-dominated regions of the spectrum more effectively. The results from the gray model are used to provide statistical descriptions of the heat transfer from the fire plume in terms of probability density functions (PDFs) of the effective fire temperature and emissivity.
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从一个烟雾,湍流池火的时间分辨辐射光谱
利用一种新型红外光谱仪获得了直径为1 m、jp -8燃料的液体池火灾在名义上静止环境下的红外辐射光谱。数据以390个光谱/秒的速率获得,允许对完全湍流的火羽的辐射进行时间分辨描述。结果讨论了有效的均匀路径长度和灰色和非灰色光谱模型,其中灰色模型更有效地拟合了光谱中煤烟主导区域的数据。灰色模型的结果用于用有效火灾温度和发射率的概率密度函数(pdf)对火焰羽流的传热进行统计描述。
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