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Lessons learned from research about methane explosive gas zones in coal mine gobs

机译:研究煤矿采空区瓦斯爆炸性气体区的经验教训

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Coal mine longwall gobs contain explosive methane gas zones (EGZs) that can cause mine fires and explosions when EGZs extend into active mining areas. The tragic explosion at the Upper Big Branch Mine in West Virginia in April 2010 cost 29 miners' lives and may have been caused by this mechanism. This paper summarises the significant research findings from five years of computational fluid dynamics (CFD) modelling research conducted at the Colorado School of Mines (CSM) under funding from the US National Institute for Occupational Safety and Health (NIOSH). CSM research has shown that EGZ formation can be effectively controlled by progressive sealing of the gob and injecting nitrogen where necessary.
机译:煤矿长壁采空区包含易爆的甲烷气区域(EGZ),当EGZ延伸到活跃的采矿区域时,可能引起煤矿起火和爆炸。 2010年4月,西弗吉尼亚州上大分公司矿发生的悲剧性爆炸使29名矿工丧生,可能是这种机制造成的。本文总结了在美国国家职业安全与健康研究所(NIOSH)的资助下,在科罗拉多矿业大学(CSM)进行的五年计算流体动力学(CFD)建模研究中的重要研究成果。 CSM研究表明,可以通过逐步密封料滴并在必要时注入氮气来有效控制EGZ的形成。

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