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Detailed investigation of flame transmission from a vessel to a discharge duct

机译:火焰从容器到排放管道的详细研究

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摘要

The present paper deals with a problem of explosion initiated in a vessel and vented through a duct. On the basis of numerical simulation (CFD) and visualization by means of high speed camera it completes and discusses the existing results and hypotheses (especially those presented in the work of Ponizy and Leyer [1]) concerning the process of enhancement of vessel pressure rise during such an explosion. In particular, numerical simulation indicates that a secondary explosion in the duct, known as a "burn-up", which is responsible for higher reduced explosion pressures during ducted venting, has its source in a highly turbulent zone generated at the duct entrance by the flame itself independently of the shape of the vessel/duct passage. Camera images confirm the hypothesis that the flame penetrating into the duct is strongly torn in this turbulent zone and mixed with fresh gases. On the other hand, these images show that the reverse flow created by the burn-up returns back to the vessel some amount of rapidly burning gases, which contributes to the vessel pressure increase in the same degree that the blockage of the outflow from the vessel and the intensification of combustion of the unburned mixture previously left in the vessel. Experimental results evidence also a strong dependence of the flame behaviour in the vessel on the vessel length and the duct diameter. They demonstrate that the final effect of the burn-up action on maximum explosion pressures reached in the vessel depends on the whole process of flame propagation in the vessel, which in turn is closely related to the vessel and duct dimensions. In particular, in some configurations, an apparition of the "tulip flame" combined with inertia of the gas column in the duct may in a spectacular manner reduce the effect of the burn-up action.
机译:本文讨论了在容器中引发并通过管道排放的爆炸问题。在数值模拟(CFD)和高速相机可视化的基础上,它完成并讨论了有关提高血管压力升高过程的现有结果和假设(尤其是Ponizy和Leyer [1]的工作中提出的结果)和假设。在这样的爆炸中。尤其是,数值模拟表明,管道中的二次爆炸(称为“燃尽”)是造成管道排气时爆炸压力降低的原因,其二次爆炸的源头是在管道入口处由管道产生的高度湍流区域。可以独立于容器/管道的形状自行燃烧。摄像机图像证实了这样的假设,即进入该管道的火焰在该湍流区域被强烈撕裂并与新鲜气体混合。另一方面,这些图像显示,由燃烧产生的逆流将一定量的快速燃烧气体返回到容器,这在一定程度上促进了容器压力的增加,与阻塞从容器中流出的程度相同以及先前留在容器中的未燃烧混合物的燃烧加剧。实验结果还证明了容器中火焰行为对容器长度和导管直径的强烈依赖性。他们证明燃尽作用对容器中达到的最大爆炸压力的最终影响取决于火焰在容器中传播的整个过程,而火焰的传播又与容器和管道尺寸密切相关。特别地,在某些构造中,“郁金香火焰”的出现与管道中气柱的惯性相结合可以以惊人的方式减小燃尽作用的影响。

著录项

  • 来源
    《Combustion and Flame》 |2014年第5期|1348-1364|共17页
  • 作者单位

    Laboratoire de Combustion et de Detonique, Ecole Nationale Superieure de Mecanique et d'Aerotechnique, 1 Avenue Clement Ader, BP 40109, 86961 Futuroscope Cedex, France;

    Institut Polytechnique de Poitiers Pprime, UPR 3346 CNRS, ENSMA, BP 40109, 86961 Futuroscope, Chasseneuil du Poitou, France;

    Institut Polytechnique de Poitiers Pprime, UPR 3346 CNRS, ENSMA, BP 40109, 86961 Futuroscope, Chasseneuil du Poitou, France;

    Institut Polytechnique de Poitiers Pprime, UPR 3346 CNRS, ENSMA, BP 40109, 86961 Futuroscope, Chasseneuil du Poitou, France;

  • 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

    Gas explosions; Ducted venting; Flame transmission; CFD;

    机译:瓦斯爆炸;管道通风;火焰传播;差价合约;
  • 入库时间 2022-08-18 00:11:30

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