梨园河煤矿井下采空区老空水定向钻孔绕障探放技术研究与应用

Research and Application on Directional Drilling and Obstacle Bypassing Exploration and Release Technology for Old Goaf Water in the Downhole Goaf of Liyuanhe Coal Mine

  • 摘要: 梨园河煤矿51104工作面采空区老空积水形态复杂、探放难度大、水害威胁严重。针对传统钻探方法钻距短、轨迹不可控、难以绕障等问题,提出一种基于“U”型轨迹设计的远距离定向钻孔探放技术。该技术结合SVR轨迹预测算法、随钻测量系统及轨迹实时测控方法,构建了集轨迹规划、动态控制与风险规避于一体的钻探体系,创新性地实现了老空水区的轨迹绕障精准穿透。在实地应用中,1号钻孔累计排水量达到3.0万m3,最大涌水量为123 m3/h,成功将积水水位从54.1 m降低至17.6 m,且钻孔穿透误差控制在1 m以内。研究结果表明,该技术在复杂地质条件下展现出高效性、安全性,并具备推广价值。

     

    Abstract: The form of old goaf water accumulation is complex, the exploration and release difficulty is large, and the threat of water damage is serious in the 51104 working face goaf of Liyuanhe Coal Mine. In view of the problems of short drilling distance, uncontrollable trajectory, difficulty in bypassing obstacles and others in the traditional drilling method, a type of long-distance directional drilling exploration and release technology based on the "U"-shaped trajectory design is proposed. This technology combines SVR trajectory prediction algorithm, MWD system, and real-time trajectory measurement and control method to construct a drilling system that integrates trajectory planning, dynamic control, and risk avoidance, three-dimensional obstacle bypassing and precise penetration in old goaf water areas are innovatively achieved. In field applications, the cumulative drainage volume of No.1 borehole reaches 30 000 m3, with a maximum water inflow of 123 m3/h, the accumulated water level is successfully reduced from 54.1 m to 17.6 m, and the drilling penetration error is controlled within 1 m. The research results show that this technology exhibits high efficiency, safety under complex geological conditions, and it has promotional value.

     

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