室外风对走廊运动烟气影响的数值研究

B. Manescau, K. Chetehouna, Q. Serra, Aijuan Wang, É. Florentin
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引用次数: 0

摘要

在本章中,为了突出室外风对烟雾沿车厢走廊运动的影响,提出了一个数值研究。为此,利用计算流体力学(CFD)软件fire Dynamics simulator (FDS)对室外风作用下的反应流进行了模拟。风速取0 ~ 12.12 m/s,根据Li等人的实验结果数据进行。数值分析发现,楼道内烟雾分层状态与弗劳德数(Fr)有关,可分为稳定浮力分层(Fr < 0.38)、不稳定浮力分层(0.38≤Fr < 0.76)和分层失败(Fr≥0.76)三种情况。当Fr≥0.76时,烟雾分层完全被打乱,烟雾占据了整个隔间的体积,对人有毒性风险。事实上,我们观察到室外风的速度对O2、CO2、CO的浓度、走廊内的能见度和排烟量有很大的影响。此外,对于数值模拟中使用的输入数据,全局敏感性分析表明,影响顶棚附近烟雾温度的主要参数是燃料的质量通量和活化能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Study on the Outdoor Wind Effects on Movement Smoke along a Corridor
In this chapter, a numerical investigation is presented in order to highlight the effects of outdoor wind on smoke movements along a corridor in a compartment. For this, the Computational Fluid Dynamics (CFD) code, fire dynamics simulator (FDS), was used to model the reactive flows in interaction with outdoor wind. The wind velocity is taken between 0 and 12.12 m/s, based on the experimental result data come from the work of Li et al. was performed. From numerical data, it was found that smoke stratification state in the corridor depends on Froude number (Fr) and it can be divided into three cases: stable buoyant stratification (Fr < 0.38), unstable buoyant stratification (0.38 ≤ Fr < 0.76), and failed stratification (Fr ≥ 0.76). When Fr ≥ 0.76, smoke stratification is completely disturbed and smoke occupies the entire volume of the compartment, highlighting a risk of toxicity to people. Indeed, it was observed that the velocity of the outdoor wind influences strongly the concentration of O2, CO2, CO, and visibility in the corridor and smoke exhaust. Moreover, for the input data used in the numerical modelling, the global sensitivity analysis demonstrated that the main parameters affecting the smoke temperature near the ceiling are the mass flux of fuel and the activation energy.
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