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Generation of an internal fire whirl in an open roof vertical shaft model with a single corner gap

机译:在带有单个角隙的开放式屋顶垂直竖井模型中生成内部火旋涡

摘要

An internal fire whirl can be generated by burning a pool fire in a vertical shaft with appropriate sidewall ventilation provision. Earlier experimental results show that the flame swirling motion depends on the corner gap width providing ventilation. In this article, experiments on generating an internal fire whirl in a 9 m tall vertical shaft model will be reported. Flame shapes in burning a gasoline pool fire inside the shaft model with different corner wall gap widths and tray diameters were observed. Fuel mass of the pool fire, flame height of the internal fire whirl, and transient air temperatures were measured. From the results, it is further confirmed that an internal fire whirl cannot be generated when the gap width is too wide or too narrow. An internal fire whirl is developed in five stages. The pool fire is burning in a way similar to burning in open air at stage I. The burning rate of pool fire increases at stage II. Swirling flame motion starts to develop at stage III. An internal fire whirl develops fully at stage IV. Stage V is the decay stage. Furthermore, the created internal fire whirl can be divided into three zones. Zone I is at the lower part with the flame rotating violently. Zone II is in the middle part with a slower swirling rate. The upper part zone III has no flame rotation.
机译:在适当的侧壁通风条件下,通过在竖井中燃烧水池火可以产生内部火涡。较早的实验结果表明,火焰回旋运动取决于提供通风的转角间隙宽度。本文将报道在9 m高的竖井模型中产生内部火涡的实验。观察到在竖井模型内部燃烧汽油池火时的火焰形状具有不同的转角壁间隙宽度和塔盘直径。测量了池火的燃料质量,内部火旋涡的火焰高度和瞬态空气温度。从结果进一步证实,当间隙宽度太宽或太窄时,都不会产生内部起火漩涡。内部火旋风分为五个阶段。池火的燃烧方式类似于在第一阶段在露天燃烧。在第二阶段,池火的燃烧速率增加。旋涡运动在第三阶段开始发展。在第IV阶段,内部的火旋风充分发展。第五阶段是衰减阶段。此外,创建的内部火旋风可以分为三个区域。 I区位于下部,火焰剧烈旋转。 II区位于中部,回旋速度较慢。上部区域III没有火焰旋转。

著录项

  • 作者

    Zou GW; Chow WK;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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