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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Maximum temperature of thermal plume beneath an unconfined ceiling with different inclination angles induced by rectangular fire sources
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Maximum temperature of thermal plume beneath an unconfined ceiling with different inclination angles induced by rectangular fire sources

机译:在非围绕的天花板下的热羽流量的最高温度,具有由矩形火力源引起的不同倾斜角度

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摘要

The maximum temperature of thermal plume beneath an unconfined ceiling with different inclination angles induced by rectangular fire sources were investigated experimentally and theoretically. The experimental results show that the maximum temperature rise at the ceiling level with different ceiling inclination angles is proportional to that of a free fire thermal plume; and the maximum temperature rise increases according to the ceiling inclination angle when other experiment conditions remain unchanged for a given fire source; A new global non-dimensional correlation combined the effects of source-ceiling height, heat release rate, source aspect ratio and especially the ceiling inclination angle are proposed to predict the maximum temperature rise. The new proposed correlation can predict the maximum temperature rise beneath the ceiling induced by axisymmetric, rectangular and line fire sources uniformly. This work provides supplementary results over previous knowledge of temperature distribution beneath the inclined ceilings. It can also provide guidance for thermal risk assessment and fire safety design of open styled spaces. (C) 2017 Elsevier Ltd. All rights reserved.
机译:实验和理论上,在实验和理论上在实验和理论上对具有不同倾斜角度引起的具有不同倾斜角度的非围绕天花板的热羽流的最高温度。实验结果表明,具有不同天花板倾斜角度的天花板水平的最高温度升高与自由火热羽毛的天花板升高成比例;当其他实验条件对给定的火源保持不变时,最大温度上升根据天花板倾斜角度增加;提出了一种新的全局非尺寸相关组合源 - 上限高度,热释放率,源极宽度比,特别是天花板倾斜角度的效果来预测最大温度升高。新的提出的相关性可以预测轴对称,矩形和线火源均匀诱导的天花板下方的最高温度升高。这项工作提供了对倾斜天花板下方的先前温度分布知识的补充结果。它还可以为公开风格空间的热风险评估和消防安全设计提供指导。 (c)2017 Elsevier Ltd.保留所有权利。

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