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Ignitability limits for combustion of unintended hydrogen releases: Experimental and theoretical results

机译:意外氢气释放燃烧的可燃性极限:实验和理论结果

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摘要

The ignition limits of hydrogen/air mixtures in turbulent jets are necessary to establish safety distances based on ignitable hydrogen location for safety codes and standards development. Studies in turbulent natural gas jets have shown that the mean fuel concentration is insufficient to determine the flammable boundaries of the jet. Instead, integration of probability density functions of local fuel concentration within the quiescent flammability limits, termed the flammability factor, was shown to provide a better representation of ignition probability. Recent studies in turbulent hydrogen jets showed that the envelope of ignitable gas composition (based on the mean hydrogen concentration), did not correspond to the known flammability limits for quiescent hydrogen/air mixtures. The objective of this investigation is to validate the flammability factor approach to the prediction of ignition in hydrogen leak scenarios. The ignition probability within a turbulent hydrogen jet was determined using a pulsed Nd:YAG laser as the ignition source. Laser Rayleigh scattering was used to characterize the fuel concentration throughout the jet. Measurements in methane and hydrogen jets exhibit similar trends in the ignition contour, which broadens radially until an axial location is reached after which the contour moves inward to the centerline. Measurements of the mean and fluctuating hydrogen concentration are used to characterize the local composition statistics conditional on whether the laser spark results in a local ignition event or complete light-up of a stable jet flame. The flammability factor is obtained through direct integration of local probability density functions. A model was developed to predict the flammability factor using a presumed probability density function with parameters obtained from experimental data and computer simulations. Intermittency effects that are important in the shear layer are incorporated in a composite probability density function. By comparing the computed flammability factor with the measured ignition probability we have validated the flammability factor approach for application to ignition of hydrogen jets.
机译:为了根据安全法规和标准制定的可燃氢位置确定安全距离,湍流喷口中氢气/空气混合物的点火极限是必要的。对湍流天然气射流的研究表明,平均燃料浓度不足以确定射流的易燃边界。取而代之的是,在静态可燃性极限范围内,将局部燃料浓度的概率密度函数积分称为可燃性因子,可以更好地表示点火概率。最近在湍流氢射流中的研究表明,可燃气体的包络线(基于平均氢浓度)与静态氢/空气混合物的已知可燃性极限不符。这项研究的目的是验证可燃性因素方法在氢气泄漏情况下的点火预测。使用脉冲Nd:YAG激光作为点火源来确定湍流氢射流中的点火概率。激光瑞利散射用于表征整个射流中的燃油浓度。甲烷和氢气射流的测量在点火轮廓上显示出相似的趋势,该轮廓径向扩展,直至到达轴向位置,此后轮廓向内移动到中心线。均值和波动的氢浓度的测量值用来表征局部成分统计数据,该条件取决于激光火花是导致局部点火事件还是稳定的喷射火焰完全点亮。可燃性因子是通过局部概率密度函数的直接积分获得的。使用从实验数据和计算机模拟获得的参数的假定概率密度函数,开发了一种模型来预测可燃性因子。在剪切层中很重要的间歇效应被合并到复合概率密度函数中。通过将计算出的可燃性因子与测得的着火概率进行比较,我们验证了可燃性因子方法在氢射流点火中的应用。

著录项

  • 来源
    《International journal of hydrogen energy》 |2011年第3期|p.2426-2435|共10页
  • 作者单位

    Combustion Research Facility, Sandia National Laboratories, Liuermore, CA, 94551, USA;

    Combustion Research Facility, Sandia National Laboratories, Liuermore, CA, 94551, USA;

    Combustion Research Facility, Sandia National Laboratories, Liuermore, CA, 94551, USA;

    Combustion Research Facility, Sandia National Laboratories, Liuermore, CA, 94551, USA;

    Mechanical Engineering Department, University of California, Berkeley, CA, 94720, USA;

  • 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

    hydrogen ignition limits; turbulent jet; flammability factor; ignition probability; pdf;

    机译:氢着火极限;湍流射流;可燃性因子;着火概率;pdf;
  • 入库时间 2022-08-18 00:28:51

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