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黄磷燃烧特性实验研究与理论分析
引用本文:黄丽丽,朱国庆,张国维.黄磷燃烧特性实验研究与理论分析[J].中国安全生产科学技术,2011,7(9):56-59.
作者姓名:黄丽丽  朱国庆  张国维
作者单位:中国矿业大学安全工程学院,徐州 221008;中国矿业大学消防工程研究所,徐州 221008
摘    要:基于黄磷燃烧特性实验,对黄磷燃烧的动力学现象进行了实验研究和理论分析。通过观察不同燃烧表面积的黄磷燃烧动力学现象,获得了黄磷的燃烧特性参数,并利用池火模型对黄磷燃烧实验进行了理论分析。研究结果表明:固定表面积的黄磷燃烧时,黄磷的质量损失速率可近似视为某一恒定值,黄磷的质量损失速率与燃烧表面积有关。黄磷燃烧实验火焰最高温度约为1000℃,火焰高度与燃烧表面积有关。池火模型可以对黄磷的燃烧特性参数进行预测和分析,池火模型所预测的火焰高度与实验数据基本相吻合,相对误差小于7%。

关 键 词:黄磷  燃烧实验  火焰高度  池火模型

Experimental study and theoretical analysis on combustion characteristics of yellow phosphorus
HUANG Li-li,ZHU Guo-qing,ZHANG Guo-wei.Experimental study and theoretical analysis on combustion characteristics of yellow phosphorus[J].Journal of Safety Science and Technology,2011,7(9):56-59.
Authors:HUANG Li-li  ZHU Guo-qing  ZHANG Guo-wei
Institution:1. Faculty of safety engineering, China University of Mining and Technology, Xuzhou 221008, China) (2. Fire research institute, China University of Mining and Technology, Xuzhou 221008, China)
Abstract:In this paper, based on the experiment in combustion characteristics of yellow phosphorus, research and theoretical analysis about the dynamic phenomenon of burning yellow phosphorus were presented. The combustion characteristic parameters of yellow phosphorus were obtained by observing the combustion dynamic phenomenon of the different surface areas of burning phosphorus, and theoretical analysis on the combustion experi- ments was conducted with pool fire model. The results showed that:when the certain surface area of phosphorus was burning, the mass loss rate of yellow phosphorus could be viewed as a constant value, the mass loss rate of yellow phosphorus had relation to burned area. The maximum temperature of yellow phosphorus flame was about 1000℃, The flame height had relation to burned area. Pool fire model could predict and analysis the combustion characteristic parameters. The flame height of predictability by pool fire model was consistent with the experimental data, and the relative error was less than 7 % .
Keywords:yellow phosphorus  combustion experiment  flame height  pool fire model
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