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吉宁煤业巷道底鼓机理及控制技术研究OA

Floor heave mechanism and control technology for roadways in Jining Coal Industry

中文摘要英文摘要

[目的]为解决吉宁煤业 2号煤层底板软岩巷道底鼓严重的问题,[方法]采用理论分析、数值模拟以及工业性试验等方式,系统分析了底板岩性组成及变形特性对底鼓现象的影响,揭示了软岩巷道底鼓产生的机理,同时给出了相应的支护加固措施.[结果]研究结果显示,2号煤层底板主要的组成成分为高岭石型泥岩,该泥岩遇水后强度大幅降低.通过 FLAC3D 数值软件模拟了底鼓量与巷道宽度、泥岩厚度、顶底板强度之间的关系,随着泥岩厚度的增加,巷道底鼓量表现为先增大后减小的非线性变化特征,并在泥岩厚度为 10 m时出现峰值;随着巷道宽度的增大,底鼓量呈负指数规律显著增长;此外,巷道硬顶软底的特殊构造同样对底鼓现象产生了一定程度的影响.[结论]综上,提出了"缩短巷道跨度+让压起底+底板加固"的控制措施,底板加固选用"锚杆(索)+反拱梁+混凝土浇筑"的联合加固方案,取得了良好的控制效果.

In order to address the severe floor heave problem in soft rock roadways of the No.2 coal seam in Jining Coal Industry,this paper analyzes the influence of floor lithological composition and deformation characteristics on floor heave through theoretical analysis,numerical simulation,and industrial tests.The mechanism of floor heave in soft rock roadways is revealed,and corresponding support and reinforcement measures are proposed.The results show that the main component of the No.2 coal seam floor is kaolinite-type mudstone,whose strength decreases significantly when exposed to water.The relationships between floor heave amount and roadway width,mudstone thickness,and roof and floor strength were simulated using FLAC3D numerical software.With increasing mudstone thickness,the roadway floor heave exhibits a nonlinear characteristic of first increasing and then decreasing,reaching a peak at a mudstone thickness of 10 m.As the roadway width increases,the floor heave amount grows significantly with a negative exponential law.In addition,the special structure of a hard roof and soft floor also exerts a certain degree of influence on the floor heave phenomenon.The author proposes control measures of"reducing roadway span+pressure-relief floor dinting+floor reinforcement".The floor reinforcement adopts a combined scheme of"anchor bolts(cables)+inverted arch beam+concrete pouring",which has achieved good control effects.

李奇

山西华晋吉宁煤业有限责任公司,山西 临汾 042100

矿业与冶金

软岩巷道底鼓机理巷道支护数值模拟

soft rock roadwayfloor heave mechanismroadway supportnumerical simulation

《陕西煤炭》 2026 (8)

57-64,8

10.20120/j.cnki.issn.1671-749x.2026.0810

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