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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >On the front velocity of buoyancy-driven transient ceiling jet in a horizontal corridor: Comparison of correlations with measurements
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On the front velocity of buoyancy-driven transient ceiling jet in a horizontal corridor: Comparison of correlations with measurements

机译:在水平走廊中由浮力驱动的瞬态天花板射流的前速度:与测量的相关性比较

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摘要

Front velocity of transient ceiling jet is a major concern for building fire safety. This work concentrates on the front velocity of transient ceiling jet in corridor fires. Experiments with both steady fire sources and a developing fire source are performed to evaluate the applicability of existing theoretical correlations for a relatively long corridor. To account for the conditions with significant heat loss from smoke flow, some modifications for these correlations are proposed by this work. Results show that the classical Hinkley's correlation without consideration of the heat loss can significantly over-predict the front velocity of transient ceiling jet at the remote locations with relatively low temperatures (e.g., less than 80℃). Jones' model, Benjamin's model and CFAST's model also over-predict the front velocity at these low temperatures, but with much smaller deviations in relation to Hinkley's correlation. The modified Hinkley's correlation, with consideration of the heat loss from smoke flow, produces more acceptable predictions for both steady and growing fires.
机译:瞬态天花板射流的前速度是建筑物防火的主要考虑因素。这项工作集中在走廊火灾中瞬态天花板射流的前端速度。进行了稳定火源和发展中火源的实验,以评估现有理论关联在较长走廊上的适用性。为了解决烟流造成的热量大量损失的情况,这项工作提出了对这些相关性的一些修改。结果表明,在不考虑热量损失的情况下,经典的欣克利相关性可以显着过高预测在相对较低的温度(例如,低于80℃)的偏远地区瞬态天花板射流的前沿速度。在这些低温下,琼斯模型,本杰明模型和CFAST模型也过高地预测了锋面速度,但与欣克利的相关性相比,偏差却小得多。考虑到烟流产生的热量损失,修正后的欣克利相关性为稳定和不断增长的火灾提供了更可接受的预测。

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