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Prevention of gob ignitions and explosions in longwall mining using dynamic seals

机译:使用动态密封件防止长壁开采中的采空区起火和爆炸

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Most, if not all longwall gob areas accumulate explosive methane-air mixtures that pose a deadly hazard to miners. Numerous mine explosions have originated from explosive gas zones (EGZs) in the longwall gob. Since 2010, researchers at the Colorado School of Mines (CSM) have studied EGZ formation in longwall gobs under two long-term research projects funded by the National Institute for Occupational Safety and Health. Researchers used computational fluid dynamics along with in-mine measurements. For the first time, they demonstrated that EGZs form along the fringe areas between the methane-rich atmospheres and the fresh air ventilated areas along the working face and present an explosion and fire hazard to mine workers. In this study, researchers found that, for progressively sealed gobs, a targeted injection of nitrogen from the headgate and tailgate, along with a back return ventilation arrangement, will create a dynamic seal of nitrogen that effectively separates the methane zone from the face air and eliminates the EGZs to prevent explosions. Using this form of nitrogen injection to create dynamic seals should be a consideration for all longwall operators.
机译:大多数(如果不是全部)长壁采空区聚集了爆炸性的甲烷-空气混合物,对矿工构成致命危险。长壁采空区的爆炸性气体区(EGZ)引起了许多矿井爆炸。自2010年以来,科罗拉多矿业学院(CSM)的研究人员根据国家职业安全与健康研究所资助的两个长期研究项目,研究了长壁采空区的EGZ形成。研究人员将计算流体动力学与矿井测量一起使用。他们首次证明,EGZ沿富煤层大气与工作面新鲜空气流通区域之间的边缘区域形成,对矿山工人存在爆炸和火灾隐患。在这项研究中,研究人员发现,对于渐进密封的料滴,有针对性地从顶板和尾板中注入氮气,以及后向回风装置,将创建动态的氮气密封,有效地将甲烷区与面部空气隔离开来。消除了EGZ,以防止爆炸。所有长壁操作员都应考虑使用这种形式的氮气注入来创建动态密封。

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