坪上煤业 15 号煤层为下组煤带压开采,底板受奥陶系峰峰组高承压水威胁,底板采动破坏深度是水害防治的核心参数。为精准获取不同工作面采宽下底板破坏规律,采用FLAC3D 数值模拟,建立 15 号煤层三维地质力学模型,设置150、180、210 m三种采宽,开展分步开挖模拟,系统分析底板应力场、位移场、塑性区演化特征。结果表明,随采宽增大,底板破坏深度逐步增加,150 m 采宽最大破坏深度21.0 m,180 m 采宽26.6 m,210 m 采宽28.5 m;破坏形式以剪切破坏为主,采空区中部伴随拉伸破坏;采宽由 150 m 增至 180 m 时破坏深度增幅最大,超过 180 m 后增长趋缓。研究成果可为工作面合理采宽优化、底板注浆治理深度设计及带压开采安全性评价提供定量依据。
No.15 coal seam of Pingshang Coal Industry was mining of the lower coal group under pressure. The floor was threatened by the high confined water of the Ordovician Fengfeng Formation. The depth of floor mining failure was the core parameter of water disaster prevention and control. In order to accurately obtain the failure law of floor under different mining widths of working face, FLAC3D numerical simulation was used to establish a three-dimensional geomechanical model of No.15 coal seam. Three mining widths of 150 m, 180 m and 210 m were set to carry out step-by-step excavation simulation, and the evolution characteristics of floor stress field, displacement field and plastic zone were systematically analyzed. The results showed that with the increase of mining width, the failure depth of floor increases gradually. The maximum failure depth of 150 m mining width was 21.0 m, 180 m mining width was 26.6 m, and 210 m mining width was 28.5 m. The failure mode was mainly shear failure, and the middle of the goaf was accompanied by tensile failure. When the mining width increased from 150 m to 180 m, the failure depth increased the most, and the growth slowed down after exceeding 180 m. The research results could provide a quantitative basis for the optimization of reasonable mining width of working face, the depth design of floor grouting control and the safety evaluation of mining under pressure.
郭向兵1,王 霞2,乔雷杰2. 煤层底板采动破坏深度数值模拟与规律研究[J]. 煤炭与化工, 2026, 49(8): 58-62.
Guo Xiangbing1, Wang Xia2, Qiao Leijie2. Study on numerical simulation and law of mining failure depth of coal seam floor. CCI, 2026, 49(8): 58-62.