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甲烷/石松子粉尘混合体系爆炸下限的变化规律 被引量:7

Experimental investigation of the lower explosion limit of hybrid mixtures of methane and lycopodium dust
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摘要 基于标准20 L球形爆炸装置,在相同测试条件下,分别测量了石松子粉尘、甲烷和不同浓度配比的甲烷/石松子粉尘混合体系爆炸下限,并将测试结果与Le Chatelier’s law、Bartknecht curve、Jiang method等混合体系爆炸下限预测结果进行了对比。结果表明:低于爆炸下限的甲烷和低于爆炸下限的石松子粉尘混合后仍具有爆炸危险性。石松子粉尘爆炸下限随混合体系中甲烷体积分数的增高而减小。Le Chatelier’s law、Bartknecht curve、Jiang method均不能准确预测甲烷/石松子粉尘混合体系爆炸下限。Le Chatelier’s law对甲烷体积分数φ与甲烷爆炸下限φ_L之比φ/φ_L<0.5的混合体系爆炸下限的预测值偏小,而对φ/φ_L>0.5的混合体系预测值偏大;Bartknecht curve在预测φ/φ_L>0.5的混合体系爆炸下限时适用性较好,而对于φ/φ_L<0.5的混合体系预测值偏小;Jiang method不适用于预测甲烷/石松子粉尘混合体系爆炸下限。 In this work,lower explosion limits of methane,lycopodium dust and methane-lycopodium dust hybrid mixtures were determined under the same testing conditions based on the 20 L sphere vessel. The measured results were compared with the values calculated by the Le Chatelier’s law,the Bartknecht curve and the Jiang method. The results showed that the combination of methane prepared in concentrations below its lower explosion limit and the lycopodium dust in concentrations below its minimum explosion concentration rate was still a mixture with a hazard of explosion. The minimum explosion concentration of lycopodium dust decreased with the increase of methane concentration in the hybrid mixtures. The lower explosion limit of methane-lycopodium dust hybrid mixtures couldn’t be accurately calculated by the Le Chatelier’s law,the Bartknecht curve or the Jiang method. The lower explosion limit of hybrid mixtures of methane and lycopodium dust calculated by the Le Chatelier’s law were smaller than the measured values for the mixtures with the methane concentration φ/φ_L〈0.5,but bigger for the mixtures with the methane concentration φ/φ_L〉 0.5. The Bartknecht curve was suitable for predicting the lower explosion limit of the hybrid mixtures with the methane concentration φ/φ_L〉0.5. But for the hybrid mixtures with a methane concentration φ/φ_L〈0.5,the calculated values were smaller than the measured ones,whereas the Jiang method was unsuitable for predicting the lower explosion limit of the hybrid mixtures of methane and lycopodium dust.
出处 《爆炸与冲击》 EI CAS CSCD 北大核心 2017年第6期924-930,共7页 Explosion and Shock Waves
基金 国家自然科学基金项目(51574056)
关键词 粉尘爆炸 爆炸下限 气粉混合体系 石松子 甲烷 dust explosion lower explosion limit hybrid mixtures lycopodium methane
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  • 1张增亮,张景林,蔡康旭.最小点火能的影响因素及计算误差分析研究[J].中国安全科学学报,2004,14(5):88-91. 被引量:24
  • 2Marmo L. , Cavallero D. Minimum Ignition Energy of Ny- lon Fibres [ J ]. J. Loss. Prevent. Proc. , 2008,21 ( 5 ) : 512-517. 被引量:1
  • 3Ryo O. ,Maslaharu N. , Shuzo F. , et al. Minimum Igni- tion Energy of Hydrogen-air Mixture: Effects of Humidity and Spark Duration [J]. J. Electrestat. , 2007,65 (2) : 87-93. 被引量:1
  • 4Proust Ch. , Aceorsi A. , Dupont L. Measuring the Vio- lence of Dust Explosions with the "20L Sphere" and with the Standard " ISO lm3 Vessel" Systematic Comparison and Analysis of the Discrepancies [ J ]. J. Loss. Prevent. Prec., 2007,20 (4-6):599-606. 被引量:1
  • 5Proust Ch. A few Fundamental Aspects about Ignition and Flame Propagation in Dust Clouds [ J ]. J. Loss. Prevent. Proe., 2006,19 (2-3) : 104-120. 被引量:1
  • 6American Society for Testing Material. E1491 Standard Test Method for Minimum Autoignition Temperature of Dust Clouds IS]. Pennsylvania: Standards Press of A- merlea, 2006. 被引量:1
  • 7American Society for Testing Material. E1515 Standard Test Method for Minimum Explosible Concentration of Combustible Dusts [ S ]. Pennsylvania: Standards Press of America. 2007. 被引量:1
  • 8American Society for Testing Material. E2019 Standard Test Method for Minimum Ignition Energy of a Dust could in Air [ S ]. Pennsylvania: Standards Press of A- merica, 2005. 被引量:1
  • 9赵雪娥,孟亦飞等.燃烧与爆炸理论[M].北京:化学工业出版社,2010. 被引量:3
  • 10Eckhoff R K. Dust explosion research. State-of-the-artoutstanding problems[ J ].Journal of Hazardous Material, 1993,35( 1 ) : 103-117. 被引量:1

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