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Flame propagation of premixed liquefied petroleum gas explosion in a tube

机译:管中预混合液化石油气爆炸的火焰传播

摘要

Flame propagation in premixed liquefied petroleum gas (LPG) explosion was studied experimentally in a tube of diameter 2.6 m and length 25 m. Experiments on LPG explosion were conducted in a single zone first in this large explosion tube. The explosion tube was then divided into two zones with different mixing ratios of LPG and air. A thin polyvinyl chloride (PVC) film sheet was used to adjust the length of each zone. A total of three single-zone experiments and five two-zone experiments were carried out. Explosion phenomena and flame propagation in the tube were studied analytically using experimental results and theoretical analysis. A simple model for the flame propagation was proposed and tested using the experimental data in the present study and some literature results. Flame propagation characteristics were found with a general trend to vary with time as an exponential function for adequate fuel with uniform concentrations within a certain distance of the tube. The flame propagation speed at a point in explosion depends on the turbulent burning speed and expansion ratio. Experimental data deviated more from the empirical exponential function for larger variations of fuel concentrations.
机译:实验研究了直径为2.6 m,长度为25 m的管在预混合液化石油气(LPG)爆炸中的火焰传播。液化石油气爆炸的实验首先在此大型爆炸管中的单个区域中进行。然后将爆炸管分成两个区域,两个区域的LPG和空气混合比例不同。使用薄的聚氯乙烯(PVC)薄膜片来调整每个区域的长度。总共进行了三个单区实验和五个二区实验。使用实验结果和理论分析对管内的爆炸现象和火焰传播进行了分析研究。提出了一个简单的火焰传播模型,并使用本研究中的实验数据和一些文献结果进行了测试。发现火焰传播特性具有随时间变化的一般趋势,这是在管的一定距离内具有均匀浓度的充足燃料的指数函数。爆炸点的火焰传播速度取决于湍流燃烧速度和膨胀比。对于较大的燃油浓度变化,实验数据与经验指数函数的偏差更大。

著录项

  • 作者

    Huo Y; Chow WK;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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