Effect of voidage on the smoldering of the mixed dust layer of wood dust and shavings on a hot plate

被引:0
|
作者
Du, Zhenguo [1 ]
Zhang, Jinglin [1 ]
Wang, Lingfeng [1 ]
Zhang, Zhiyang [1 ]
Li, Gang [1 ]
Yuan, Chunmiao [1 ]
机构
[1] Northeastern Univ, Fire & Explos Protect Lab, Shenyang 110819, Peoples R China
基金
中国国家自然科学基金;
关键词
Voidage; Dust layer; Hot plate; Oxygen transport; Heat transfer; IGNITION BEHAVIOR; PARTICLE-SIZE; SOLID-FUEL; COMBUSTION; BIOMASS; BED; POWDER;
D O I
10.1016/j.apt.2024.104643
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In the wood processing industry, wood dust commonly mixes with other processing by-products to form piles, which generally have large voidage due to differences in component sizes. It is essential to understand the effect of voidage on the true ignition and smoldering behavior of wood dust layer on hot plates. In this study, wood dust and shavings were selected as experimental materials. The effects of voidage on the minimum ignition temperature of the dust layer (MITL), ignition delay time, and smoldering behaviors were investigated by means of a hot plate test. The results showed that the addition of large-sized shaving particles significantly enhanced the overall voidage of the dust layer. With the increased deposit voidage, the ignition delay time decreased, and smoldering propagation accelerated. When the shavings content was less than 50%, the MITL decreased; however, further addition of shavings significantly increased the MITL. The analysis shows that voidage affects the ignition and smoldering behavior of the dust layer mainly by influencing oxygen transport and heat transfer processes. These findings offer a new insight for the prevention and control of dust fires under real working conditions. (c) 2024 The Society of Powder Technology Japan. Published by Elsevier BV and The Society of Powder Technology Japan. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
引用
收藏
页数:11
相关论文
共 20 条
  • [1] Experimental study of fire spread in mixed piles of wood dust and shavings
    Du, Zhenguo
    Chen, Haiyan
    Zhang, Jinglin
    Zhang, Zhiyang
    Li, Gang
    Yuan, Chunmiao
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2025, 94
  • [2] Smoldering combustion of dust layer on hot surface
    El-Sayed, SA
    Abdel-Latif, AM
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2000, 13 (06) : 509 - 517
  • [3] Effects of particle size on the self-ignition behaviour of a coal dust layer on a hot plate
    Li, Bei
    Li, Mengjia
    Gao, Wei
    Bi, Mingshu
    Ma, Li
    Qin, Qihua
    Shu, Chi-Min
    FUEL, 2020, 260
  • [4] Effect of particle size and dust layer size on ignition characteristics of PMMA dust layer on hot surface
    Huang, Lei
    Jiang, Haipeng
    Gao, Wei
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2021, 71 (71)
  • [5] Ignition of Deposited Wood Dust Layer by Selected Sources
    Turekova, Ivana
    Markova, Iveta
    APPLIED SCIENCES-BASEL, 2020, 10 (17):
  • [6] Propagation of Smouldering in Wood Dust Deposits Ignited by Embedded Hot Bodies
    Li, Chang
    Zhang, Jinglin
    Zhao, Haoran
    Yuan, Chunmiao
    Du, Zhenguo
    Dong, Zheren
    Amyotte, Paul
    Zhao, Zenghui
    Li, Ronghua
    Liang, Weitong
    Xie, Zhiqun
    FIRE AND MATERIALS, 2025, 49 (03) : 347 - 356
  • [7] Impact of particle size on autoignition and smoldering of bituminous coal dust layer driven by thermal radiation
    Wang, Hongfang
    Feng, Quan
    Gong, Junhui
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2024, 149 (15) : 8365 - 8378
  • [8] Experimental Study on Flame Spread of Pine Wood Dust Layer Under Horizontal Rotation Condition
    Guo, Lianghui
    Chen, Zhifeng
    Wei, Gang
    Yuan, Chunmiao
    COMBUSTION SCIENCE AND TECHNOLOGY, 2024,
  • [9] Inerting effect of CaCO3 powder on the combustion characteristics of wood dust layer
    Lv, Pengfei
    Li, Gongfang
    Liu, Kaiyuan
    Pang, Lei
    FUEL, 2024, 364
  • [10] Inerting effect of CaCO3 powder on flame spread of wood dust layer
    Lv, Pengfei
    Liu, Zhendong
    Zhao, Jing
    Pang, Lei
    JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2023, 82