FDS在水平电缆桥架火灾蔓延预测中的应用

Hyo-Yeon Jang, Ho-Sik Han, Cheol-Hong Hwang, Sang Kyu Lee
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摘要

对于电缆桥架火灾,将火灾模拟得到的预测结果与现实条件下火灾实验的测量结果进行对比,是保证模型预测可靠性的关键。在确定特定火灾实验中执行的计算过程和程序的有效性时,结果可能因用户的能力而异。这是因为fire模型的特点导致用户高度依赖。在本研究中,我们检验了当先前研究建议的电缆桥架火灾物理量被应用时,是否可以类似地预测火灾的实际蔓延。本文还应用考虑电缆布置的火灾模型方法对某核电站的火灾蔓延进行了预测,并与实验结果进行了对比分析。火灾蔓延时间的预测结果因电缆布放方式(松散布放和紧密布放)的不同而不同。最后,我们设计了一个过程,通过对火灾模型中考虑的物理性质对应的输入参数(密度、比热和导热系数)的敏感性分析,与实验结果相比,准确预测热释放率(HRR)曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of FDS to Predicting Fire Spread in a Horizontal Cable Tray
With regard to cable tray fires, comparing the prediction results obtained through fire simulations with the measurement results from fire experiments conducted under real-life conditions is essential to ensure the predictive reliability of the model. In determining the validity of the calculation process and procedure performed in a specific fire experiment, the result may vary depending on the user’s capability. This is because of the high user dependence due to the characteristics of the fire model. In this study, we examined whether the actual spread of fire could be similarly predicted when the physical quantities of cable tray fires suggested by previous studies were applied. We also applied a fire modeling method considering the arrangement of cables to predict appropriate fire spread in a nuclear power plant and then performed a comparative analysis of the results and the experimental results. The prediction results, in terms of the fire spread time, varied depending on the arrangement type (whether loosely and tightly arranged) of cables. Finally, we devised a process of accurately predicting the heat release rate (HRR) curve as compared to the experimental results by using a sensitivity analysis of the input parameters (density, specific heat, and thermal conductivity) corresponding to the physical properties considered in the fire model.
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