首页  科学研究  学术论文  2023年
 
Mechanism of flashback in horizontal smoldering of polyurethane foam: A numerical study
文章来源:SKLFS  作者:SKLFS  发布时间:2024-05-23

Mechanism of flashback in horizontal smoldering of polyurethane foam: A numerical study

Author:Wang, Z. Z., Zhu, H., Liu, N. A., Chen, H. X., Xie, X. D., Yan, W. D., Huang, M. Z.

Journal:Proceedings of the Combustion Institute

DOI:  10.1016/j.proci.2022.07.102

KeywordsHorizontal smoldering, Polyurethane foam, Flashback, Char oxidation, Natural convection, transition, combustion, model, Thermodynamics, Energy & Fuels, Engineering

Abstract

Smoldering of polyurethane foam continues to attract the attention of the fire community because of its potential of causing severe fire hazards. Our previous work observed a unique flashback phenomenon denoting the reversal spread of horizontal smoldering front. This work further develops a one-dimensional model of foam smoldering via Gpyro to examine the flashback mechanism. The model adopts a 6-step reaction scheme consisting of two pyrolysis and four oxidation reactions based on thermogravimetric analysis. Comparison with the experimental results indicates that the computational model successfully reproduces the flashback phenomenon and explains the flashback mechanism. From the view of chemical kinetics, the initial pyrolysis of foam is followed by the oxidation of & beta;-foam during the 1st stage with a lower peak temperature and limited oxygen supply, and the flashback in the 2nd stage is mainly dominated by char oxidation, which results in more heat releases and a higher peak temperature. The rapid temperature rise at the end of the 2nd stage, causing the maximum temperature in the whole smoldering process, is attributable to the oxidation of & alpha;-char (secondary char oxidation).& COPY; 2022 The Combustion Institute. Published by Elsevier Inc. All rights reserved.


 
 
相关链接
Mechanism of flashback in horizontal smoldering of polyurethane foam: A numerical study
联系我们
安徽省合肥市金寨路96号
图书馆VIP
火灾安全全国重点实验室
邮政编码:230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.tsg211.com
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
火灾科学国家重点实验室 版权所有 皖ICP备:002106505 号