期刊论文详细信息
International Journal of Coal Science & Technology
Effect of periodic wide atmospheric pressure change on CO emission in closed goaf
Research
Haiyan Wang1  Xiaozhen Song2  Yan Guo2  Zhuangzhuang Shao2  Shuhui Fu2  Tianze Li2  Chaohuan Chen2  Bo Tan2  Ruili Hu3 
[1] School of Civil and Resources Engineering, University of Science and Technology Beijing, 100083, Beijing, China;School of Emergency Management and Safety Engineering, China University of Mining and Technology (Beijing), 100083, Beijing, China;Security Department, University of International Business and Economics, 100029, Beijing, China;
关键词: Atmospheric pressure;    Periodic variation;    Closed goaf;    CO emission;    Coal mine;   
DOI  :  10.1007/s40789-023-00628-y
 received in 2023-05-10, accepted in 2023-08-10,  发布年份 2023
来源: Springer
PDF
【 摘 要 】

Atmospheric pressure fluctuation is one of the most important factors affecting the climate environment and gas emission in the fire area. To obtain the influence rule of the surface atmospheric pressure change on the gas sampling and abnormal emission in the mine closed goaf, the No. 1 coal mine in Dananhu was taken as the research object. Using Fourier transform and Fisher harmonic analysis and other statistical methods, the influence of the periodic variation of atmospheric pressure on the gas leakage and outflow in the closed goaf was studied. The results showed that there were three atmospheric pressure periods of 15.2 d, 1 d and 182.2 d, and the probability was greater than 95%. The time period with the highest number of atmospheric pressure peaks was 7:00–8:00, which accounted for 20.2% of total occurrence number in a day. And the time periods with the highest number of atmospheric pressure trough were 2:00, 15:00 and 16:00, accounting for 27.4%. The peak-to-trough transition time was mainly concentrated around 6 h, and the diurnal variation curve of atmospheric pressure was mainly bimodal. The atmospheric pressure change rate was mostly concentrated in 10–50 Pa/h. It was determined that the distance that the gas sampling pipe was pre-laid into the inner side of the closed wall should be greater than 44.4 m, and the CO concentration and atmospheric pressure in the closed goaf were both periodic and negative with atmospheric pressure. The research results have important guiding significance for the monitoring, early warning and environmental protection of the goaf.

【 授权许可】

CC BY   
© China Coal Research Institute 2023

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