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An Experimental Investigation of the External Wind Effects on the Ceiling Temperature Distribution of Fire-Induced Thermal Flow in a Corridor Connected to a Compartment

机译:外部风效应对舱室的走廊中火灾热流的天花板温度分布的实验研究

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摘要

Fire-induced thermal flow is the greatest threat to trapped people and the heat-resistant quality of building structures. This paper presents an experimental investigation of the effects of external wind on the ceiling temperature distribution of fire-induced thermal flow in a one-sixth scale corridor connected to a compartment. In the experiments, the fire source was placed in the compartment with hot thermal flow spilled into the connected corridor. The heat release rate (HRR) was changed from 10 to 20 kW and the external wind velocity was changed from 0 to 2.09 m/s. The ends of the corridor could be adjusted to be fully or partially open to the environment with dam-boards arranged at the ends of the corridor. An effective corridor HRR, Qcorridor, was defined to account for the amount of the spilled plume into the corridor. Results show that the temperature under the ceiling changed in a non-monotonic way with wind velocity: it first increased and then decreased with wind velocity. It was revealed that the dam-boards at the corridor opening had an evidently shielding effect, leading to higher temperature compared to the fully open environment. Finally, uniform correlations are proposed for predicting the attenuation law of ceiling temperature profiles in corridors for different wind conditions.
机译:火灾引起的热流是捕获人的最大威胁和建筑结构的耐热质量。本文介绍了外风对连接到隔室的一六个走廊中的火灾热流的天花板温度分布的实验研究。在实验中,将消防源放置在隔室中,热热流入连接的走廊。热释放速率(HRR)从10到20kW变为20千瓦,外部风速从0变为2.09米/秒。可以调节走廊的端部以完全或部分地向环境中的环境打开,坝板布置在走廊的末端。定义了一个有效的走廊HRR,qcorridor,以占溢出的羽流量进入走廊的量。结果表明,天花板下的温度以非单调的方式改变了风速:它首先增加,随着风速下降。据透露,走廊开放的大坝板具有明显的屏蔽效果,导致与完全开放的环境相比的更高温度。最后,提出了统一的相关性,以预测不同风能的走廊中的天花板温度曲线的衰减规律。

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