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Zhang Y, Ji J, Li J, Sun JH, Wang QS, Huang XJ (2012a)Fire Safety Journal 51, 120-125.
文章来源:SKLFS    作者:SKLFS    发布时间:2013-09-14

Zhang Y, Ji J, Li J, Sun JH, Wang QS, Huang XJ (2012a) Effects of altitude and sample width on the characteristics of horizontal flame spread over wood sheets. Fire Safety Journal 51, 120-125. [In English]
Web link: http://dx.doi.org/10.1016/j.firesaf.2012.02.006
Keywords: Wood sheet; Flame size; Flame spread rate; Width effects; Altitude; effects; heat-transfer; fire spread; surface; microgravity
Abstract: To explore the effects of altitude and sample width on the burning characteristics of wood, a series of experiments are carried out at two different altitudes with varying widths (W) of thin wood sheets. Flame size and flame spread rate are measured over a range of sample widths from 2 cm to 12 cm. At both altitudes, the width effects on both the dimensionless flame height (H-f/W) and the spread rate are analyzed. The dimensionless flame heights at both altitudes show negative power law relationships with the sample width, and the decline at a low altitude (50 m, Hefei) is much smaller than that at a high altitude (3658 m, Lhasa). The spread rate curves at both altitudes contain a turning point: Before the point, the spread rate decreases with sample width, and after it, the rate increases. Furthermore, heat transfer theory was applied to explain the altitude and sample width effects on the flame spread rate, and the experimental results agree well with the theoretical analysis. (C) 2012 Elsevier Ltd. All rights reserved.

 
 
相关链接
Zhang Y, Ji J, Li J, Sun JH, Wang QS, Huang XJ (2012a)Fire Safety Journal 51, 120-125.
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