"U+L"型通风下切顶留巷工作面采空区气体运移与自燃危险区域划分OA
Gas migration and spontaneous combustion hazard zone division in goaf of roof-cutting entry retaining working face under"U+L"ventilation
为了系统研究"U+L"型通风方式下切顶卸压沿空留巷(简称"切顶留巷")工作面采空区气体运移规律,以国能乌海能源五虎山矿 011206 切顶留巷工作面为研究对象,采用理论分析、实验研究、数值模拟及工程验证相结合的方法,综合分析切顶留巷工作面采空区气体运移规律、气体体积分数分布特征及自燃防治技术.通过封闭耗氧实验,获得了 12#煤样关键耗氧参数,并以此为基础建立采空区数值模型,模拟分析不同工况下气体运移及体积分数分布特征演化规律.结果表明:增加留巷进风巷的配风比例或提升工作面总供风量,均会显著扩大采空区内高氧(氧气体积分数较高)区域的覆盖范围,导致氧化带宽度明显增加(配风比例增加时,留巷侧氧化带宽度增幅可达 116.7%;供风量增加时,氧化带宽度增幅达 32.3%);有效降低切顶留巷向采空区的漏风率,可以显著缩小高氧区域范围,减小氧化带宽度,从而有效抑制自燃危险区域的形成.模拟揭示了一个关键阈值:当漏风率降至 5%以下时,进一步降低漏风率对缩小氧化带宽度、提升自燃防治效果的作用变得非常有限,此时技术难度与成本激增但收益甚微.数值模拟及工程验证结果显示,采空区自燃高风险区域主要分布在留巷进风巷影响区、切顶留巷 5~15 m 范围及工作面后方 3 个区域;以氧气体积分数 15.53%为临界值进行自燃"三带"划分,确定进风侧窒息带距工作面 119 m,氧化带最大宽度为 96 m.
To systematically investigate the gas migration laws in the roof-cutting and pressure relief gob-side entry retaining(abbre-viated as root-cutting entry retaining)face and goaf under the"U+L"ventilation system,the 011206 roof-cutting entry retaining face of Wuhushan Mine,CHN Energy Wuhai Energy,was taken as the research object.Using a combination of theoretical analysis,experimental research,numerical simulation and engineering verification,the gas migration laws,volume fraction distribution char-acteristics and spontaneous combustion prevention technology in the goaf of the roof-cutting entry retaining face were comprehens-ively analyzed.Key oxygen consumption parameters of No.12 coal samples were obtained through closed oxygen consumption ex-periments.On this basis,a numerical model of the goaf was established to simulate and analyze the evolution laws of gas migration and volume fraction distribution under different working conditions.The results show that increasing the air distribution ratio of the entry retaining intake airway or raising the total air supply volume of the working face will significantly expand the coverage of the high-oxygen(a relatively high volume fraction)zone in the goaf,resulting in an obvious increase in the width of the oxidation zone(when the air distribution ratio increases,the width of the oxidation zone on the entry retaining side increases by up to 116.7%;when the air supply volume increases,the oxidation zone width increases by 32.3%);effectively reducing the air leakage rate from the roof-cutting entry retaining into the goaf can significantly narrow the high-oxygen zone and reduce the oxidation zone width,thereby ef-fectively inhibiting the formation of spontaneous combustion hazard zones.The simulation reveals a critical threshold:when the air leakage rate drops below 5%,further reducing the air leakage rate has a very limited effect on narrowing the oxidation zone and im-proving the spontaneous combustion control effect,while technical difficulty and cost surge with little benefit.Numerical simulation and engineering verification show that the high-risk zones of spontaneous combustion in the goaf are mainly distributed in three areas:the affected zone of the entry retaining intake airway,the 5-15 m section along the roof-cutting entry retaining,and the area behind the working face.With oxygen volume fraction of 15.53%as the critical value,the"three zones"of spontaneous combus-tion were divided.It is determined that the suffocation zone on the intake side is 119 m away from the working face,and the maxim-um width of the oxidation zone is 96 m.
李亚斌;汪志强;付蓉;李辉;陈积鑫
国能乌海能源黄白茨矿业有限责任公司,内蒙古 乌海 016000国能乌海能源黄白茨矿业有限责任公司,内蒙古 乌海 016000国能乌海能源黄白茨矿业有限责任公司,内蒙古 乌海 016000国能乌海能源黄白茨矿业有限责任公司,内蒙古 乌海 016000中煤科工集团沈阳研究院有限公司,辽宁 抚顺 113122||煤矿灾害防控全国重点实验室,辽宁 抚顺 113122
矿业与冶金
切顶卸压沿空留巷气体运移采空区自燃"三带"自燃危险区域
roof cutting and pressure reliefgob-side entry retaininggas migrationgoafspontaneous combustion"three zones"spontaneous combustion hazard zone
《煤矿安全》 2026 (6)
102-115,14
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