主管:中华人民共和国应急管理部
主办:应急管理部天津消防研究所
ISSN 1009-0029  CN 12-1311/TU

消防科学与技术 ›› 2023, Vol. 42 ›› Issue (12): 1611-1617.

• • 上一篇    下一篇

不同阻塞比下甲烷泄爆峰值超压变化规律试验研究

程建华1, 郭亚鹏1, 何况2, 顿志林1   

  1. (1. 河南理工大学 土木工程学院,河南 焦作 454003;2. 郑州地铁集团有限公司,河南 郑州 450000)
  • 出版日期:2023-12-15 发布日期:2023-12-15
  • 作者简介:程建华(1976- ),男,河南理工大学副教授,硕士,主要从事安全技术与管理研究,河南省焦作市山阳区世纪大道河南理工大学,454003。
  • 基金资助:
    国家自然科学基金重点项目(U1810203);国家自然科学基金资助项目(52178388);中铁十六局集团有限公司资助项目(H22—541)

Experimental study on the changing law of peak overpressure rule of methane explosion relief under different blocking ratio

Cheng Jianhua1, Guo Yapeng1, He Kuang2, Dun Zhilin1   

  1. (1. School of Civil Engineering, Henan Polytechnic University, Henan Jiaozuo 454003, China;2. Zhengzhou Rail Transit Co., Ltd., Henan Zhengzhou 450000, China)
  • Online:2023-12-15 Published:2023-12-15

摘要: 为探究天然气泄爆过程内部压力变化规律,利用10 L有机玻璃管道试验装置进行了系列甲烷-空气预混气体爆炸试验,以此为基础分析了管道末端阻塞以及中部阻塞两种工况下甲烷-空气预混气体泄爆时管内峰值超压、峰值超压持续时间、Helmholtz振荡升压速率随泄爆面积的变化关系。试验结果表明:末端阻塞工况下前峰和后峰峰值超压均随着泄爆面积的减小而升高,而中部阻塞工况下位于爆炸腔体外传播管道内部后峰峰值超压随着泄爆面积的减小而不断降低;峰值超压持续时间方面,前峰超压持续时间与泄爆面积关系不大,后峰超压持续时间受泄爆面积影响明显;中部阻塞及末端阻塞两种工况下爆炸升压速率变化情况不具有一致性,中部阻塞时爆炸升压速率随阻塞率先增大后减小,60%阻塞率时出现极大值。末端阻塞时爆炸升压速率随阻塞率先减小后增大,60%阻塞率时出现极小值。

关键词: 甲烷-空气预混, 泄爆过程, 压力变化, 超压持续时间, 升压速率, 阻塞比, 峰值超压

Abstract: In order to explore the natural gas venting process of internal pressure change law, the use of 10 L plexiglass pipeline experimental device for a series of methane—air premixed gas explosion test. Thus, based on these experiments, this study analyzed the change relationships between peak overpressure, the peak overpressure duration, Helmholtz oscillation rate, and the leakage and explosion area when the premixed methane—air gas leaking and exploding in the scenarios of blockage in the end of pipe and in the middle of pipe. Research results show that, in the scenario of end blockage, both the pre—peak and post—peak overpressure increase with the decrease of the leaking and exploding area, while in the scenario of middle blockage, the post peak overpressure located outside the explosion pipe and inside the transmission pipe continuously decreases with the decrease of the leaking and exploding area. In terms of peak overpressure duration, there is little relationship between the duration of the pre—peak overpressure and the explosion area, while the duration of the post—peak overpressure is significantly affected by the leaking and explosion area. There is no consistency in the variation of explosive pressure rise rate in the scenarios of middle blockage and end blockage. In the scenario of middle blockage, the explosive pressure rise rate first increases and then decreases with blockage rate, and a maximum value appears at 60% blockage rate. In the scenario of end blockage, the explosive pressure rise rate decreases first and then increases with the blocking rate, and a minimum value appears at 60% blocking rate.

Key words: premixed methane—air gas, leaking and exploding process, pressure changes, overpressure duration, pressure rising rate, blocking ratio, peak overpressure