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Factors Affecting the Make-Up Air and Their Influence on the Dynamics of Atrium Fires

机译:影响补充空气的因素及其对中庭火灾动态的影响

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In case of fire, constructive features of typical atria could favor the spread of smoke. This makes the design of their smoke control and management systems a challenging task. Five full-scale fire experiments in the literature have been analyzed and numerically compared in FDS v6 to explore the influence of the make-up air. However, these fire experiments cover only a limited number of set-ups and conditions, and require further numerical modeling to obtain a deeper understanding of the makeup air influence. Subsequently, 84 simulations with FDS v6 have been carried out, considering different vent areas (air velocity from 0.4 to 5.3 m/s) and configurations, two heat release rates (2.5 and 5 MW), and two pan locations. It is demonstrated that make-up air velocities lower than the prescribed limit of 1 m/s, by the international codes, may induce adverse conditions. Based on our results, we recommended fire engineers to numerically assess the fire scenario with even lower velocity values. The results also show that asymmetric configurations are prone to induce circulation around the flame which can contribute to the formation of longer flames and fire whirls. Thus, this numerical study links two fire types allowing the connection of pool fires to fire whirls, which completely differ in behaviour and smoke filling, for the sake of design of fire safety.
机译:万一发生火灾,典型心房的建设性特征可能会促进烟气的扩散。这使其烟气控制和管理系统的设计成为一项艰巨的任务。在FDS v6中,对文献中的五个全面火灾实验进行了分析和数值比较,以探讨补充空气的影响。但是,这些火灾实验仅涵盖有限的设置和条件,并且需要进一步的数值模型以更深入地了解补充空气的影响。随后,使用FDS v6进行了84次模拟,考虑了不同的通风口区域(空气速度从0.4到5.3 m / s)和配置,两个放热率(2.5和5 MW)以及两个锅位置。事实证明,补充空气流速低于国际法规规定的1 m / s的规定限值可能会导致不利条件。根据我们的结果,我们建议消防工程师以更低的速度值对火情进行数字评估。结果还表明,不对称构型易于引起火焰周围的循环,这可能有助于形成更长的火焰和火涡。因此,该数值研究将两种火灾类型联系在一起,以便于设计消防安全,从而将池火与火涡旋联系起来,这在行为和烟雾填充方面完全不同。

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