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高瓦斯矿井掘进工作面惰性气体可控循环通风系统设计OA

Design of controlled circulation ventilation system for inert gases in high gas mining face

中文摘要英文摘要

[目的]针对高瓦斯矿井掘进工作面瓦斯积聚风险高、传统通风技术效率不足的问题,提出一种基于惰性气体的可控循环通风系统.[方法]该系统通过引入N2作为惰性介质,结合气幕阻隔装置与瓦斯抽采系统,动态调控掘进巷内的O2与瓦斯浓度.具体方法为关闭绕道巷风门,利用制氮机生成N2形成气幕阻隔O2渗入,并通过瓦斯抽采管排出高浓度瓦斯混合气体;设置循环净化区消除低浓度瓦斯,实时监测气体浓度以调整N2供给与抽采量.[结果]通过CFD数值模拟验证,气幕可显著抑制瓦斯扩散,使后方区域瓦斯浓度降低至安全阈值(<5%),同时优化巷道内流速与压力分布,避免瓦斯积聚.[结论]结果表明,该系统可有效解决高瓦斯矿井通风难题,兼具增风降温、节能降耗与动态调控优势,为矿井安全高效生产提供了技术保障.

Aiming at the high risk of gas accumulation in the face of high gas mines and the insufficient efficiency of tradi-tional ventilation technology,this paper proposes a controlled circulation ventilation system based on inert gas.The system dynamically regulates the oxygen and gas concentration in the roadway by introducing nitrogen as an inert medium and com-bining an air curtain barrier device with a gas extraction system.The specific method includes:closing the air door of the by-pass lane,utilizing a nitrogen generator to generate nitrogen to form an air curtain to block oxygen infiltration,and dischar-ging the high-concentration gas mixture through the gas extraction pipe;setting up a circulating purification zone to eliminate the low-concentration gas,and real-time monitoring of the gas concentration in order to adjust the supply of nitrogen and the amount of gas extraction.Through CFD numerical simulation,it is verified that the gas curtain can significantly inhibit the spread of gas,reduce the gas concentration in the rear area to the safety threshold(<5%),and at the same time optimize the flow rate and pressure distribution in the roadway to avoid the accumulation of gas.The results show that the system can effectively solve the ventilation problems of high-gas mines,combining the advantages of air increase and temperature reduc-tion,energy saving and dynamic control,and providing a technical guarantee for safe and efficient production in mines.

牛杰栋

晋能控股集团沁秀公司岳城煤矿,山西晋城 048000

矿业与冶金

高瓦斯矿井掘进工作面惰性通风阻隔机理瓦斯控制

high-gas minedriving faceinert ventilationbarrier mechanismgas control

《陕西煤炭》 2026 (4)

182-186,202,6

10.20120/j.cnki.issn.1671-749x.2026.0432

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