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现代矿业 ›› 2026, Vol. 42 ›› Issue (06): 91-97.

• 采矿工程 • 上一篇    下一篇

兖州矿区近距离多煤层开采底板破坏规律数值模拟研究

仲崇武1 季官军2 程雨肖3 郝国伟1 李 静1 成文举3 尹会永3   

  1. 1. 兖矿能源集团股份有限公司南屯煤矿;2. 济宁市煤矿安全生产监测监控中心; 3. 山东科技大学地球科学与工程学院
  • 出版日期:2026-06-25 发布日期:2026-07-22

Numerical Simulation Research on Floor Damage Laws of Close-range Multi-coal-layer Mining in Yanzhou Mining Area

ZHONG Chongwu1 JI Guanjun2 CHENG Yuxiao3 HAO Guowei1 LI Jing1 CHENG Wenju3 YIN Huiyong3   

  1. 1. Nantun Coal Mine,Yankuang Energy Group Co.,Ltd.;2. Jining Municipal Center for Monitoring Coal Mine Work Safety Operations;3. College of Earth Sciences and Engineering,Shandong University of Sci⁃ ence and Technology
  • Online:2026-06-25 Published:2026-07-22

摘要: 为准确预测煤层开采诱发的底板破坏深度,有效防治矿井底板水害,保障煤矿安全 生产。在近距离多煤层开采条件下,针对兖州矿区南屯煤矿底板破坏深度预测的关键问题,基于 大量工程统计规律的经验公式,计算了煤层底板破坏深度,并通过 FLAC3D数值模拟软件,建立了三 维地质力学模型,系统模拟了工作面多煤层开采过程,深入分析了开采扰动下底板岩层的应力演 化、塑性区分布及破坏深度变化规律。结果表明:11501 工作面底板破坏带经验公式深度分别为 18.56 m 和 26.52 m。数值模拟显示,底板破坏深度随推进距离增大而增加,顶底板应力增大,采空 区两端形成应力集中区。推进 350 m 时,破坏深度达最大值(约 20 m),之后稳定但范围扩展;推进 100 m 时,破坏范围随深度递减,最大深度约 20m。经验公式与数值模拟相互验证,均可有效预测 底板破坏深度,为底板水害防治提供可靠依据。该研究为类似地质条件矿区安全开采提供重要技 术参考。

关键词: 多煤层开采, 底板破坏深度, 矿井水害防治, 数值模拟

Abstract: In order to accurately predict the depth of floor damage caused by coal mining and effec⁃ tively prevent mine floor water disasters,ensuring the safety of coal mining production. Under the condi⁃ tion of close-range multi-coal-layer mining,in response to the key issue of floor damage depth prediction in the Nantun Coal Mine of Yanzhou mining area,based on a large number of engineering statistical laws and empirical formulas,the floor damage depth of the coal seam was calculated. Through the FLAC3D nu⁃ merical simulation software,a 3D geological mechanics model was established to systematically simulate the multi-coal-layer mining process of the working face,and to deeply analyze the stress evolution,plas⁃ tic zone distribution and damage depth change laws of the floor rock layer under mining disturbance. The re⁃ sults show that the empirical formula depth of the floor damage zone in the 11501 working face is 18.56 m and 26.52 m respectively. The numerical simulation shows that the floor damage depth increases with the advancement distance,the top and bottom plate stress increases,and stress concentration zones are formed at both ends of the mined area. When advancing 350 m,the damage depth reaches the maximum value (about 20 m),and then stabilizes but expands the range; when advancing 100 m,the damage range decreases with depth,and the maximum depth is about 20 m. The empirical formula and numerical simula⁃ tion mutually verify each other,and both can effectively predict the floor damage depth,providing a reli⁃ able basis for the prevention of floor water disasters. This research provides important technical references for safe mining in similar geological conditions.

Key words: multi-coal-layer mining, floor failure depth, mine water hazard prevention, numerical simulation