Comparative Study on Theoretical and Numerical Calculations of Mass Flow Rate through Opening of Compartment

S. Ha, C. Oh
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Abstract

In this study, stratified, well-mixed, and simplified theoretical model equations and Fire Dynamics Simulator (FDS) were used to calculate the mass inflow, outflow and neutral height to determine the usefulness of previously proposed simple formulas for the calculation of the mas flow rate through openings of compartments in case of fire. The mass flow rate through the opening was evaluated for two conditions, i.e., a fire inside the compartment and no fire, with a high-temperature homogeneous mixture filled inside the compartment. The height of the neutral plane calculated using the theory and FDS under the condition of fire inside the compartment well obeyed the trend of the experiment. In particular, the FDS results for the neutral plane height and inlet air mass flow well agreed with the experiment. However, for the inlet air mass flow rate, the theoretically obtained stratified and well-mixed model equations overestimated the mass flow variation trend according to the increase in opening width. The results of the stratified model equation were the most consistent with the FDS calculation results regardless of temperature, under the condition of a uniform mixture inside the compartment. Regarding the inlet air flow rate, the difference between the theoretical equation result and FDS result was not small. In contrast, for the effluent air flow rate, the results of the simplified formula were the most consistent with the FDS results.
舱室开口质量流量理论计算与数值计算的比较研究
本研究采用分层、充分混合和简化的理论模型方程和火灾动力学模拟器(FDS)来计算质量流入、流出和中性高度,以确定先前提出的简单公式在火灾情况下通过舱室开口的最大流量计算中的实用性。在室内有火和室内无火两种情况下,对通过该开口的质量流量进行了评估。用理论和FDS计算出的中位面高度与实验结果吻合较好。其中中性面高度和进气质量流量的FDS计算结果与实验结果吻合较好。然而,对于进口空气质量流量,理论上得到的分层和混合模型方程高估了质量流量随开口宽度增加的变化趋势。在室内混合均匀的情况下,无论温度如何,分层模型方程的结果与FDS计算结果最一致。对于进气流量,理论方程计算结果与FDS计算结果差异不大。相比之下,对于排出空气流速,简化公式的结果与FDS的结果最一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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