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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Comparison of the distribution of carbon monoxide concentration and temperature rise in channel fires: Reduced-scale experiments
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Comparison of the distribution of carbon monoxide concentration and temperature rise in channel fires: Reduced-scale experiments

机译:通道火灾中一氧化碳浓度和温升分布的比较:缩小规模的实验

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摘要

In a channel fire, the transports of the two primary hazards, heat and CO species, are dominated by different mechanisms. Experiments were conducted in a horizontal channel with dimensions of 66.0 m long × 1.5 m wide × 1.3 m high to investigate the spatial distributions of CO volume concentration and those of temperature rise. The effects of longitudinal ventilation were also considered. Both in the longitudinal direction and in the vertical direction, profiles of CO volume concentration differ with those of temperature rise. In the downstream direction, the temperature rise of smoke flow decays rapidly with increase in the distance from the fire origin, while CO volume concentration remains constant in the longitudinal direction. A larger longitudinal ventilation velocity leads to a slower decay in temperature rise along the longitudinal direction. However, longitudinal ventilation has a small influence on the longitudinal profiles of normalized CO volume concentration. As compared with temperature rise, the CO volume concentration decays more slowly with the decrease in height under the conditions without longitudinal ventilation. However, a relatively large longitudinal ventilation velocity leads to a high similarity between the vertical profile of CO volume concentration and that of temperature rise.
机译:在河道火灾中,两种主要危害(热量和一氧化碳)的传输受不同机制的控制。在长66.0 m×宽1.5 m×高1.3 m的水平通道中进行实验,以研究CO体积浓度的空间分布和温度升高的空间分布。还考虑了纵向通风的影响。在纵向和垂直方向上,CO体积浓度的分布随温度升高而不同。在下游方向,烟流的温度升高随着距火源距离的增加而迅速衰减,而CO体积浓度沿纵向保持恒定。较大的纵向通风速度会导致温度沿纵向方向的下降速度变慢。但是,纵向通风对标准化的CO体积浓度的纵向分布影响很小。与温度上升相比,在没有纵向通风的条件下,随着高度的降低,CO体积浓度的下降更为缓慢。但是,相对较大的纵向通风速度会导致CO体积浓度的垂直分布与温度升高的垂直分布之间具有很高的相似性。

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