欢迎访问《现代矿业》杂志官方网站,今天是 分享到:
×

扫码分享

现代矿业 ›› 2026, Vol. 42 ›› Issue (04): 8-14.

• 采矿工程 • 上一篇    下一篇

草楼铁矿二步骤矿柱采场并段回采结构参数稳定性研究与应用

徐伟卓1 洪敦敏2,3 王 靖2,3 刘培正2,3 梅佳伟2,3   

  1. 1 .安徽金安矿业有限公司;2.金属矿山开采安全与灾害防治全国重点实验室; 3.中钢集团马鞍山矿山研究总院股份有限公司
  • 出版日期:2026-04-25 发布日期:2026-05-06

Research and Application of Stability of the Joint Mining Structure Parameters of 2nd Step Pillar Stope in Caolou Iron Mine

XU Weizhuo1 HONG Dunmin2,3 WANG Jing2,3 LIU Peizheng2,3 MEI Jiawei2,3   

  1. 1 .Anhui Jinan Mining Co.,Ltd.;2.State Key Laboratory of Metal Mining Safety and Disaster Prevention and Control;3.Sinosteel Maanshan General Institute of Mining Research Co.,Ltd.
  • Online:2026-04-25 Published:2026-05-06

摘要: 草楼铁矿南北两端矿体相对较薄,在一步骤充填体内布置回采工程中,为减少中段 采准工程,保障充填法高中段并段回采安全,开展结构参数及采场稳定性研究。基于矿山岩体基 础特性调查与参数化处理工作,设计北4P、南4P二步骤矿柱并段回采方案。利用Mathews 稳定图 法,分析采场跨度合理性;通过FLAC3D软件,模拟-410,-350 m 中段并段回采后的位移、应力及塑性 区分布;借助三维激光扫描,定量评价实施效果。Mathews 稳定图法采场顶底板、矿体及充填体稳 定数与水力半径的关系分析表明,北4P采场长46 m,跨度23 m,高110 m,并留设3 .5 m 护壁矿柱; 南4P采场长30 m,跨度27 m,高110 m,并留设2 .5 ~3.5 m 护壁矿柱,2 个试验采场并段结构参数合 理,采场可保持稳定。数值模拟结果表明,最大位移较小且集中在矿房中部上盘1/3处和护顶矿 柱,分别为4.48,5.56 cm;周边最小拉应力分别为2.45,3.1 MPa,最大压应力分别为31,27.5 MPa,均 未超过围岩强度,采场塑性区分布可控。工业试验中,充填体未垮塌,空区尺寸符合设计要求,回 采率达90%,废石混入率7%。研究验证了二步骤矿柱110 m 并段回采的技术可行性,为类似围岩 条件下的二步骤采场高效安全回采提供了理论依据和工程参考。

关键词: 二步骤回采, 采场稳定性, Mathews, 图解法, 数值模拟

Abstract: In view of the relatively thin ore body at the north and south ends of Caolou Iron Mine,in order to avoid the arrangement of mining engineering in the 1st step filling body,reduce the middle mining preparation engineering,and ensure the safety of the high and middle section of the filling method,the structural parameters and stope stability are studied.Based on the investigation of the basic characteristics of mine rock mass and parametric processing,the 2nd step pillar mining scheme of north 4P and south 4P is designed.The rationality of stope span is analyzed by Mathews stability diagram method.The distribution of displacement,stress and plastic zone after mining in the middle section of -410 m and -350 m is simu⁃ lated by FLAC3D software,and the implementation effect is quantitatively evaluated by 3D laser scanning. The analysis of the relationship between the stability number of the roof and floor,ore body and filling body and the hydraulic radius of the stope by Mathews stability diagram method shows that the north 4P stope is 46 m long,23 m span,110 m high and 3.5 m wall protection pillar is set,and the south 4P stope is 30 m long,27 m span,110 m high and 2.5 ~3.5 m wall protection pillar is set.The structural parame⁃ ters of the two test stopes are reasonable and the stope can be kept stable.The maximum displacement of numerical simulation is small and concentrated in 1/3 of the hanging wall in the middle of the room and the top pillar,which are 4.48 cm and 5.56 cm respectively.The minimum tensile stress of the surrounding rock is 2.45 MPa and 3.1 MPa respectively,and the maximum compressive stress is 31 MPa and 27.5 MPa respectively,which do not exceed the strength of the surrounding rock.The distribution of plastic zone in stope is controllable.In the industrial test,there was no collapse of the filling body,the size of the empty area met the design requirements,the recovery rate was 90%,and the waste rock mixing rate was 7%.The study verified the technical feasibility of the 110 m parallel mining of the 2nd step pillar,and provided a theoretical basis and engineering reference for the efficient and safe mining of the 2nd step stope under sim⁃ ilar surrounding rock conditions.

Key words: 2nd step stope, stope stability, Mathews graphic method, numerical simulation