首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Control technology for the avoidance of the simultaneous occurrence of a methane explosion and spontaneous coal combustion in a coal mine: A case study
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Control technology for the avoidance of the simultaneous occurrence of a methane explosion and spontaneous coal combustion in a coal mine: A case study

机译:避免煤矿瓦斯爆炸和自燃同时发生的控制技术:案例研究

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Methane gas explosions and spontaneous combustion of coal severely threaten mining production safety and efficiency. Methane drainage can reduce the risk of a methane explosion while it may intensify the self-ignition of coal. To understand the relationship between these two issues, a working face of the Xinji No.2 Coal Mine in China was studied. A model of high drill holes extraction (HDHE) is established and the methane concentration distribution and air leakage under four different drainage pressures (below atmospheric) were determined. The simulation results show that drainage pressures can control the methane concentration in the air, so as not to exceed a threshold value. However, these drainage pressures enlarged the size of the zone where spontaneous combustion could occur due to the increase in air leakage. The possibility of the coexistence of a methane explosion and spontaneous coal combustion was proposed. This is an important index for the selection of a reasonable methane drainage pressure. The monitoring data from the mine were used to validate the model. (C) 2016 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:瓦斯爆炸和煤的自燃严重威胁采矿生产的安全性和效率。瓦斯抽放可以减少瓦斯爆炸的风险,同时可以加剧煤的自燃。为了理解这两个问题之间的关系,研究了中国辛集二号煤矿的工作面。建立了高孔抽采(HDHE)模型,确定了四种不同排水压力(低于大气压)下的甲烷浓度分布和漏气。仿真结果表明,排水压力可以控制空气中的甲烷浓度,使其不超过阈值。但是,这些排泄压力扩大了由于漏气增加而可能发生自燃的区域的大小。提出了甲烷爆炸与自燃煤并存的可能性。这是选择合理的甲烷排放压力的重要指标。来自矿山的监测数据用于验证模型。 (C)2016年化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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