煤炭工程 ›› 2026, Vol. 58 ›› Issue (3): 198-205.doi: 10.11799/ce202603024

• 研究探讨 • 上一篇    下一篇

基于AHP-EWM-KNN模型的煤矿顶板涌水危险性评价

张慈增,张 栋   

  1. 煤炭工业规划设计研究院有限公司,北京 100120

  • 收稿日期:2025-04-07 修回日期:2025-07-03 出版日期:2026-03-10 发布日期:2026-04-14
  • 通讯作者: 张慈增 E-mail:157821356@qq.com

Roof flooding risk assessment method based on the fusion of AHP-entropy weight method and KNN machine learning

  • Received:2025-04-07 Revised:2025-07-03 Online:2026-03-10 Published:2026-04-14

摘要:

为构建科学、严谨的煤层顶板涌水危险性评价体系,以嘎鲁图矿井2105工作面为背景,采用层次分析法-熵权法(AHP-EWM)优化涌水影响因素的综合权重,确定顶板涌水主控因素。以渗透系数、含水层厚度、孔隙水压力、温度及内聚力等指标为输入参数,结合K近邻(KNN)机器学习算法,构建“数据输入-模型训练-现场验证-性能优化-预测应用”一体化的煤层顶板涌水危险性评价模型。结果表明:含水层厚度对嘎鲁图矿煤层顶板涌水的影响程度最大,渗透系数次之;通过对含水层厚度数据进行清洗与降噪处理,可显著提升模型预测精度,所构建的AHP-EWM-KNN融合模型精确率为0.9598F1-score0.9569,验证了评价指标选取合理、预测方法可行。预测结果显示,2105工作面辅助运输巷距开切眼0~330 m1620~2210m区段为涌水高危险区域。该研究成果丰富了井下煤层顶板涌水危险性评价方法体系。

关键词: 顶板涌水, AHP-EWM, 机器学习, 模型预测, 数据清洗, K近邻

Abstract:

The water inrush risk assessment method is the theoretical basis for the design and optimization of mine production and drainage system. In order to construct a more scientific and rigorous risk assessment system for coal seam roof water inflow, the AHP (analytic hierarchy process)-entropy weight method was used to optimize the comprehensive weight of the influencing factors of water inflow, and the main controlling factors of coal seam roof water inflow were determined. Based on the sample data of six indexes, including permeability coefficient, aquifer thickness, pore water pressure, temperature and cohesion, a coal seam roof water inrush evaluation model was trained with the logical framework of "data input-model output-field verification-performance improvement-simulation prediction". The results show that the thickness of the aquifer predicted by the KNN model has the greatest impact on the water inflow of the roof of the Galutu coal seam, followed by the permeability coefficient. The accuracy of the KNN prediction model is 0.9598 and F1-score: 0.9569, which verifies the rationality of the selection of the evaluation index of coal seam water inrush risk and the feasibility of the model prediction. It is predicted that the auxiliary transportation of 2105 working face will be in the high-risk area in the range of 0~330m and 1620~2210m from the cutting hole of the working face, and the research results have expanded the risk assessment method of underground coal seam water inflow.

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