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基于大口径爆炸管道的防爆门快速火区封闭与爆炸泄放特性试验研究

Experimental Research on Rapid Fire Zone Sealing and Explosion Venting Characteristics of an Explosion Venting Door Using a Large-Diameter Explosion Pipeline.

作者信息

Li Ang, Si Junhong, Zhou Xihua

机构信息

School of Emergency Technology and Management, North China Institute of Science and Technology, Beijing 101601, China.

College of Safety Science and Engineering, Liaoning Technical University, Fuxin 123000, China.

出版信息

ACS Omega. 2021 Oct 10;6(41):27536-27545. doi: 10.1021/acsomega.1c04561. eCollection 2021 Oct 19.

Abstract

To study the law of influence of an explosion venting door on gas explosion characteristics and verify its venting effect and fast sealing performance, a large-sized explosion pipeline experimental system was used. The gas explosion tests were carried out under the conditions of 5.5, 7.5, 9.5, and 11.5% gas concentration. The gas explosion characteristic parameters were measured by a data acquisition system. The laws of change in characteristic parameters and the flame-proof effect were analyzed. The results showed that the pressure peak was attenuated by 42.25, 50.54, 53.27, and 52.88% under the aforementioned four working conditions. As the gas volume fraction increased, the peak explosion pressure decayed as a quadratic function, and the average closing time of the fire zone was 13 h. This showed that the explosion venting door had significant explosion venting characteristics and the function of quickly closing the fire zone. The law of temperature change was basically the same, no matter how the gas concentration changed, and the explosion venting door had no inhibitory effect on the gas explosion flame. Under the four operating conditions, the maximum average values of the flame propagation speed were 103.56, 105.73, 136.67, and 138.34 m/s. The results of the study provide theoretical support for explosion-proof technology and emergency rescue technology in coal mines.

摘要

为研究防爆门对瓦斯爆炸特性的影响规律,验证其泄爆效果及快速密封性能,采用了大型爆炸管道实验系统。在瓦斯浓度为5.5%、7.5%、9.5%和11.5%的条件下进行了瓦斯爆炸试验。通过数据采集系统测量瓦斯爆炸特性参数。分析了特性参数的变化规律及隔爆效果。结果表明,在上述四种工况下,压力峰值分别衰减了42.25%、50.54%、53.27%和52.88%。随着瓦斯体积分数的增加,爆炸压力峰值呈二次函数衰减,火区平均封闭时间为13小时。这表明防爆门具有显著的泄爆特性和快速封闭火区的功能。无论瓦斯浓度如何变化,温度变化规律基本相同,防爆门对瓦斯爆炸火焰无抑制作用。在四种工况下,火焰传播速度的最大平均值分别为103.56、105.73、136.67和138.34m/s。该研究结果为煤矿防爆技术和应急救援技术提供了理论支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d805/8529660/6b54b6ee320e/ao1c04561_0002.jpg

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