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Effect of particle granularity on smoldering fire in wood chips made from wood waste: An experimental study

机译:粒子粒度对木材废料制成的木屑中闷烧火灾的影响:实验研究

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摘要

Fires in wood waste storages cause financial losses, are difficult to extinguish, and emit large amounts of fire effluents. The mechanisms related to fires in wood chip piles are not well elucidated. To find suitable preventive measures for handling such fires in wood waste, a better understanding of the physical properties of wood waste is needed. The present study investigates how granularity affects mechanisms of smoldering fire and transition to flaming in wood chip piles. Eighteen experiments with samples inside a top-ventilated, vertical cylinder were conducted. Heating from underneath the cylinder induced auto-ignition and smoldering fire, and temperatures and mass loss of the sample were measured. The results showed that granularity significantly affects the smoldering fire dynamics. Material containing larger wood chips (length 4-100 mm) demonstrated more irregular temperature development, higher temperatures, faster combustion, and higher mass losses than material of smaller wood chips (length 4 mm). The larger wood chips also underwent transition to flaming fires. Flaming fires were not observed for small wood chips, which instead demonstrated prolonged and steady smoldering propagation. The differences are assumed to be partly due to the different bulk densities of the samples of large and small wood chips affecting the ventilation conditions. Increased knowledge about these combustion processes and transition to flaming is vital to develop risk-reducing measures when storing wood chips made from wood waste in piles.
机译:木材废物储存的火灾导致财务损失,难以熄灭,并发出大量的火水。与木屑桩中的火灾有关的机制并不熟悉。为了寻找在木材废物中处理此类火灾的合适预防措施,需要更好地了解木材废物的物理性质。本研究调查了粒度如何影响闷烧火灾和过渡到木屑桩的燃烧机制。对顶部通风,垂直圆柱内的样品进行了18个实验。从汽缸诱导的自动点火和闷烧火灾中加热,并测量样品的温度和质量损失。结果表明,粒度显着影响了闷烧的消防动力学。含有较大的木屑(长度4-100mm)的材料显示出更不规则的温度显影,较高的温度,更快的燃烧,比较小木屑的材料更高,燃烧更高(长度<4mm)。较大的木屑也经过转变为火红的火灾。对于小型木屑未观察到火焰火灾,而是延长延长且稳定的闷烧繁殖。假设差异部分是由于大型木屑样品的不同堆积密度,影响通风条件。增加了对这些燃烧过程的知识,并转变为火焰的转变对于在储存桩中的木材废料制成的木屑时,造成风险降低措施至关重要。

著录项

  • 来源
    《Fire and materials》 |2020年第4期|540-556|共17页
  • 作者单位

    RISE Fire Res AS Res & Innovat Trondheim Norway;

    RISE Fire Res AS Res & Innovat Trondheim Norway;

    RISE Fire Res AS Res & Innovat Trondheim Norway;

    RISE Fire Res AS Res & Innovat Trondheim Norway|Western Norway Univ Appl Sci Fac Sci & Engn Dept Safety Chem & Biomed Lab Sci Haugesund Norway|Otto von Guericke Univ Fac Proc & Syst Engn FVST Inst Instrumental & Environm Technol IAUT Magdeburg Germany;

    Western Norway Univ Appl Sci Fac Sci & Engn Dept Safety Chem & Biomed Lab Sci Haugesund Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fire; granularity; smoldering; transition to flaming; waste; wood chips;

    机译:火;粒度;闷烧;过渡到火焰;浪费;木屑;
  • 入库时间 2022-08-18 21:38:37

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