中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Experimental Study on the Interaction of Fine Water Spray with Liquid Pool Fires

文献类型:期刊论文

作者Guangxuan Liao; Jianghong Liu; Jun Qin; Bin Yao
刊名JOURNAL OF THERMAL SCIENCE
出版日期2001
卷号10期号:4页码:377384
关键词Fine Water Spray Interaction Pool Fires.
英文摘要An experimental study of the interaction of a fine water spray with liquid pool fires was performed. Spatially resolved droplet size, velocity distributions, and volume flux of the fine water spray have been obtained in two types of pressure-atomized fine spray, using LDA/APV technology. A method to correct for the presence of droplets is presented and used to determine the heat release rate using a cone calorimeter system, the effects of water spray application on the heat release rate for liquid pool fires were studied. It was found that the volume flux of the water spray is an important factor to determine the liquid pool fire behavior. For the current experimental conditions, the flame was enlarged when lower volume flux of water is used, and suppressed significantly when larger volumes of water are used. Two opposing mechanisms compete when water sprays are applied, which is more complex than the halon agents, such as 1301. The combustion enhancement becomes insignificant when water sprays with the proper characteristics such as adequate volume flux are applied to the diffusion flame in a confined space.
公开日期2013-03-12
源URL[http://ir.etp.ac.cn/handle/311046/53758]  
专题工程热物理研究所_Journal of Thermal Science
推荐引用方式
GB/T 7714
Guangxuan Liao,Jianghong Liu,Jun Qin,et al. Experimental Study on the Interaction of Fine Water Spray with Liquid Pool Fires[J]. JOURNAL OF THERMAL SCIENCE,2001,10(4):377384.
APA Guangxuan Liao,Jianghong Liu,Jun Qin,&Bin Yao.(2001).Experimental Study on the Interaction of Fine Water Spray with Liquid Pool Fires.JOURNAL OF THERMAL SCIENCE,10(4),377384.
MLA Guangxuan Liao,et al."Experimental Study on the Interaction of Fine Water Spray with Liquid Pool Fires".JOURNAL OF THERMAL SCIENCE 10.4(2001):377384.

入库方式: OAI收割

来源:工程热物理研究所

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