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Experiments of gasoline-air mixture explosion suppression by non-premixed nitrogen in a closed tunnel

机译:非预混合氮在封闭隧道中抑制汽油-空气混合物爆炸的实验

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摘要

Experiments of the gasoline-air explosion suppression by non-premixed nitrogen were carried out in a closed tunnel through the visualization experimental bench, and extinction pictures of the flame front of the suppression process were acquired by a high-speed camera. Based on the analysis of the experimental data and high-speed camera photos, overpressure characteristic and flame behaviour of the suppression process were discussed. Results showed that the method of nitrogen non-premixed suppression can dramatically decrease the overpressure and overpressure rise rate of the gasoline-air explosion. When the lengths of ignition section and nitrogen non-premixed section were 45 and 226 cm, respectively, the suppression experiment would be successful if the initial gasoline vapour concentration was less than 2.12 %. Analysis of behaviour photos of the flame front showed that the whole suppression process can be divided into three periods, inertia maintenance stage, suppression attenuation stage and diffusion extinguishment stage. Energy of the high-energy radicals of the chemical reaction was taken away by the nitrogen molecule during the suppression process, resulting in that the main reaction chains were changed into termination chains. This was the dominant mechanism for the nitrogen non-premixed suppression process. The flame during the suppression attenuation stage composed of suppression attenuation zone and core zone, and the suppression attenuation zone was the main zone where the suppression attenuation took place. During the suppression attenuation stage, relationship between the flame speed and time can be summarized by a linear formula.
机译:通过可视化实验台在封闭的隧道中进行了非预混氮抑制汽油-空气爆炸的实验,并通过高速相机获取了抑制过程的火焰前沿的消光图像。在对实验数据和高速相机照片进行分析的基础上,讨论了抑制过程的过压特性和火焰行为。结果表明,非预混氮抑制方法可以显着降低汽油-空气爆炸的超压和超压上升率。当点火段的长度和非预混氮段的长度分别为45和226 cm时,如果初始汽油蒸气浓度小于2.12%,则抑制实验将是成功的。通过对火焰前沿行为照片的分析表明,整个抑制过程可以分为三个阶段,惯性维持阶段,抑制衰减阶段和扩散熄灭阶段。化学反应的高能自由基的能量在抑制过程中被氮分子带走,导致主反应链变为终止链。这是氮非预混抑制过程的主要机理。抑制衰减阶段的火焰由抑制衰减区和核心区组成,抑制衰减区是发生抑制衰减的主要区域。在抑制衰减阶段,火焰速度和时间之间的关系可以用线性公式总结。

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