厚松散层下煤炭安全开采注浆治理现状与展望

Grouting treatment for safe coal mining beneath thick unconsolidated strata: current status and prospects

  • 摘要: 厚松散层下煤炭开采面临突水溃砂、覆岩失稳及地表沉降等问题,注浆治理是改善地层承载与隔水性能的重要技术手段。围绕厚松散层下煤炭安全开采需求,回顾了注浆技术发展历程;归纳了渗透注浆、劈裂注浆、压密注浆及喷射注浆的作用机制与适用条件;分析了水泥材料与化学材料的性能特点及地层适配要求;结合典型注浆治理工程场景,给出了注浆治理策略;围绕钻孔施工与孔壁稳定控制、注浆压力与流量动态调控、注浆施工时序与孔内分段控制,总结了注浆精细化施工的控制要点;从理论计算、数值模拟与物理模拟试验及现场实测等方面,梳理了区域注浆改造效果评价的研究进展。分析了现有研究存在的问题:注浆理论模型与复杂地质条件的适配性不足;注浆模拟平台对复杂工况的仿真能力欠缺;注浆材料的综合适配性与功能性有待提升;注浆施工过程缺乏动态精准调控能力;注浆效果评价体系的针对性不足。指出未来应围绕多因素耦合精细化注浆理论模型、绿色高性能注浆材料、智能注浆装备与感知系统、数字孪生与全过程可视化管控及多维度全周期效果评价体系等方面进一步发展。

     

    Abstract: Coal mining beneath thick unconsolidated strata faces risks including water and sand inrush, overburden instability, and surface subsidence. Grouting treatment is an important technical means of improving the load-bearing and water-sealing properties of strata. Focusing on the requirements for safe coal mining beneath thick unconsolidated strata, this review traces the development of grouting technology and summarizes the mechanisms and applicable conditions of permeation, fracture, compaction, and jet grouting. It analyzes the properties of cementitious and chemical grouting materials and the requirements for matching these materials to different strata, and presents grouting strategies for typical engineering scenarios. Key aspects of precise grouting construction control are summarized in terms of drilling and borehole wall stability control, dynamic regulation of grouting pressure and flow rate, and construction sequencing and borehole stage control. Research progress in evaluating the effectiveness of regional grouting treatment is reviewed from the perspectives of theoretical calculation, numerical simulation, physical model testing, and field measurements. Current research has several limitations: grouting theory models do not adequately accommodate complex geological conditions, simulation platforms have limited capabilities for reproducing complex operating conditions, grouting materials require improvements in overall adaptability and functionality, construction processes lack precise dynamic regulation, and effectiveness evaluation systems lack specificity. Future development should focus on refined grouting theory models incorporating multiple coupled factors, environmentally friendly high-performance grouting materials, intelligent grouting equipment and sensing systems, digital twins and full-process visual monitoring and control, and multidimensional effectiveness evaluation systems covering the entire life cycle.

     

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