会议论文详细信息
World Multidisciplinary Earth Sciences Symposium 2017
Methane Explosion Mitigation in Coal Mines by Water Mist
Chikhradze, Nikoloz^1 ; Mataradze, Edgar^1 ; Chikhradze, Mikheil^1 ; Krauthammer, Ted^2 ; Mansurov, Zulkhair^3 ; Alyiev, Erhan^3
G.Tsulukifze Mining Institute, Tbilisi, Georgia^1
Center for Infrastructure Protection and Physical Security, University of Florida, United States^2
Institute of Combustion Problems, KAZ, United States^3
关键词: Coal dust explosions;    High pressure pumps;    Methane explosions;    Power supply module;    Protective systems;    Signal transmission;    Technical solutions;    Underground opening;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/95/4/042029/pdf
DOI  :  10.1088/1755-1315/95/4/042029
来源: IOP
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【 摘 要 】

Statistics shows that the majority of accidents with fatal outcome are caused by methane and/or coal dust explosion. This leads to assume that contemporary counter-explosion systems of various designs cannot be considered effective. Considering the growing threat of methane explosion in the coming years along with the development of deeper levels, the improvement of a system for protecting people in underground opening appears urgent. This paper focuses on technical solutions to be used in designing a protective system for minimizing the consequences of methane explosions in coalmines. The new protective system consists of three main modules: i) a high-speed shock wave suppression section; ii) a suppression section with a long-term action and iii) a system activating device. The shock wave suppressor contains a 200 litre volume water tank with a built-in gas generator and nozzles. It is activated after 12ms from the blast moment, the duration of discharge is 40 s. The suppression section with a long-term action contains a 2000 litre volume water tank, a high-pressure pump, a hydraulic accumulator, solenoid valves, and a system of pipes with built-in nozzles. It is activated after 4 s from the blast moment, the duration of discharge is 8 min. The activation device includes a detection block containing sensors, an emergency signal generation module, a signal transmission module, a signal receiving module and a power supply module. The system operates in a waiting mode and activates immediately upon the receipt of the start signal generated by the detector. The paper also addresses the preliminary results of the system prototype testing in the tunnel.

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