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现代矿业 ›› 2025, Vol. 41 ›› Issue (09): 108-115.

• 采矿工程 • 上一篇    下一篇

张庄铁矿高大采场回采稳定性分析

刘哲伟 周 林 张 强   

  1. 安徽马钢张庄矿业有限责任公司
  • 出版日期:2025-09-25 发布日期:2025-11-04

Stability Analysis of High and Large Stope Mining in Zhangzhuang Iron Mine

  1. Anhui Masteel Zhangzhuang Mining Co.,Ltd.
  • Online:2025-09-25 Published:2025-11-04

摘要: 以张庄铁矿为工程背景,采用数值模拟方法,系统分析高大采场在回采过程中的稳定 性与安全性。基于COMSOL仿真平台,构建了包含围岩、矿体和充填体的精细化三维地质力学模型, 真实反映采场地质条件与结构参数。通过模拟“隔一采一”的回采顺序(以 0204和 0507盘区为例), 从应力分布与位移演化2个维度,系统分析了一步采与二步采过程中围岩与充填体的力学响应。研 究结果表明:应力集中显著出现在采空区边角及矿柱区域,201~205矿房开采后,最大应力值随开采 推进由 16.3 MPa增至 24.3 MPa;二步采过程中,因两侧均为充填体,其强度远低于原岩,导致采空区 顶板下沉与底板鼓胀显著;501~505矿房开采后,Z向位移最大达 18 cm,Y向位移达 12 cm,充填体持 续向采空区方向移动,存在片帮风险。研究结果为类似条件下大结构参数采场的稳定性分析与安全 控制提供了理论依据和工程参考。

关键词:  高大采场, 稳定性分析, 数值模拟

Abstract: Taking Zhangzhuang Iron Mine as the engineering background,the stability and safety of high and large stope in the mining process are systematically analyzed by numerical simulation method. Based on the COMSOL simulation platform,a refined three-dimensional geomechanical model including surrounding rock,ore body and filling body is constructed to truly reflect the geological conditions and struc⁃ tural parameters of the stope. By simulating the mining sequence of "one mining one interval" ( taking 0204 and 0507 panels as examples ),the mechanical response of surrounding rock and filling body in the process of one-step mining and two-step mining is systematically analyzed from two dimensions of stress distribu⁃ tion and displacement evolution. The results show that the stress concentration occurs significantly in the cor⁃ ner of the goaf and the pillar area. After the mining of 201~205 rooms,the maximum stress value increases from 16.3 MPa to 24.3 MPa with the advance of mining. In the process of two-step mining,because both sides are filling bodies,their strength is much lower than that of the original rock,resulting in significant roof subsidence and floor heave in the goaf. After the mining of 501~505 rooms,the maximum displacement in Z direction is up to 18 cm,and the displacement in Y direction is up to 12 cm,the filling body continues to move towards the goaf,and there is a risk of spalling. The research results provide a theoretical basis and engineering reference for the stability analysis and safety control of stopes with large structural parameters under similar conditions.

Key words: high and large stope, stability analysis, numerical simulation