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首页> 外文期刊>Process safety progress >Propagation of a Vapor Cloud Detonation from a Congested Area into an Uncongested Area: Demonstration Test and Impact on Blast Load Prediction
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Propagation of a Vapor Cloud Detonation from a Congested Area into an Uncongested Area: Demonstration Test and Impact on Blast Load Prediction

机译:蒸气云爆炸从拥挤区域向不拥挤区域的传播:演示测试及其对爆炸载荷预测的影响

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摘要

A test was conducted which demonstrates that a detonation wave, once formed due to a deflagration to detonation transition (DDT) within a congested region, will propagate as a detonation from the congested region into an uncongested region. This is the expected behavior based on the general behavior of detonation waves as well as other tests reported in literature. The impact of a detonation wave propagating beyond the congested volume in which it is initiated on the resulting blast load was evaluated parametrically. As would be expected, the impact on the blast load is large for flammable clouds which extend well beyond the congested volume. The test rig was 16.5 m (54 ft) long with the first 9.1 m (30 ft) of the rig length comprised of a congested section 3.7 m (12 ft) in width and 1.8 m (6ft) high. The congestion was made up of a regular array of vertical circular tubes [6 cm (2.375 in.) diameter, pitch-to-diameter ratio of 4.1, area and volume blockage ratios of 23% and 4.2%, respectively]. The last 7.3 m (24 ft) of the test rig length was completely uncongested. The test rig was configured without any confinement (i.e., no wall or roof sections). A near-stoichiomet-ric ethylene-air mixture completely filled both the congested and uncongested portions of the test rig. Prior testing with a similar rig configuration had shown that this flammable mixture would undergo a DDT within the congested portion of the rig.
机译:进行的测试表明,爆燃波一旦由于拥挤区域内的爆燃向爆轰过渡(DDT)而形成,便会以爆炸形式从拥挤区域传播到非拥挤区域。这是基于爆炸波的一般行为以及文献中报告的其他测试的预期行为。通过参数评估爆轰波的传播超出其引发时的拥挤体积对爆炸载荷的影响。不出所料,可燃云对爆炸载荷的影响很大,其范围远远超过拥挤的体积。测试台长16.5 m(54 ft),台长的前9.1 m(30 ft)由3.7 m(12 ft)宽和1.8 m(6ft)高的拥挤部分组成。拥塞由规则的垂直圆形管阵列组成[直径为6厘米(2.375英寸),螺距与直径之比为4.1,面积和体积堵塞率分别为23%和4.2%]。测试台长度的最后7.3 m(24 ft)完全没有拥挤。测试台的配置没有任何限制(即没有墙壁或屋顶部分)。接近化学计量的乙烯-空气混合物完全充满了测试装置的堵塞和未堵塞部分。先前使用类似钻机配置进行的测试表明,这种易燃混合物将在钻机的拥塞区域内经历DDT。

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  • 来源
    《Process safety progress》 |2013年第2期|199-206|共8页
  • 作者单位

    Baker Engineering and Risk Consultants, Inc. (BakerRisk), 3330 Oakwell Court, San Antonio, TX, 78218;

    Baker Engineering and Risk Consultants, Inc. (BakerRisk), 3330 Oakwell Court, San Antonio, TX, 78218;

    Baker Engineering and Risk Consultants, Inc. (BakerRisk), 3330 Oakwell Court, San Antonio, TX, 78218;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    detonation; DDT; VCE; ethylene; blast load;

    机译:爆炸滴滴涕;VCE;乙烯;爆炸载荷;

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