浅埋煤层覆岩采动损伤时空演化及浆体邻位充填能力分析

Analysis on the Time−Space Evolution of Mining−Induced Damage in Overburden of Shallow Coal Seam and the Filling Capacity of Slurry Adjacent Position

  • 摘要: 煤矿区垮落带空间演化及矸石浆体充填能力评估是采空区矸石浆体充填技术亟需破解的关键难题。为准确计算垮落区矸石浆体充填空间大小及处置矸石量,以黄河中游陕北凉水井煤矿42208工作面为基础地质原型,采用颗粒流离散元方法构建覆岩采动损伤数值模型,模拟分析采动覆岩裂隙发育和空隙率演化规律,结合实测结果对比验证数值模拟结果的准确性,综合理论分析与数值模拟结果计算确定了采空区垮落带矸石浆体邻位充填年处置矸石量。结果表明:(1)凉水井42208工作面覆岩采动导水裂隙带发育高度平均为67.00 m,裂采比平均19.14;垮落带平均发育高度为20 m,垮采比平均为5.71。覆岩导水裂隙带发育形态呈正梯形特征;(2)由采动覆岩空隙率演化可得,采空区矸石浆体充填靶向区主要处于采空区两侧垮落带内水平距两侧煤柱50 m范围内;(3)凉水井煤矿42208工作面采空区垮落带矸石浆体充填年处置矸石量约为33万t。研究结果可为黄河中游煤炭开采区垮落带矸石浆体高效邻位充填提供理论依据,有助于实现煤炭资源绿色低碳发展。

     

    Abstract: The spatial evolution of the caving zone in coal mining areas and the assessment of the filling capacity of gangue slurry are the key issues that must be urgently addressed in the gangue slurry filling technology for goaf areas. To accurately calculate the filling space volume of the gangue slurry in caving zones and the amount of gangue to be disposed, this study took the No. 42208 working face of the Liangshuijing Coal Mine as the basic geological prototype, a numerical model of the mining−induced overburden damage was constructed by using the particle flow discrete element method. The development of fractures and the evolution law of void ratio in the mining−induced overburden were simulated and analyzed. The accuracy of the numerical simulation results was verified by comparing the measurement results. Based on the comprehensive theoretical analysis and numerical simulation results, the annual gangue disposal amount for adjacent filling of gangue slurry in goaf caving zones was determined. The results show that the average development height of the water−conducting fracture zone in the overburden of the No. 42208 working face of Liangshuijing Coal Mine is 67.00 m, with an average fracture−mining ratio of 19.14, the average development height of the caving zone is 20 m, with an average caving−mining ratio of 5.71. The development morphology of the water−conducting fracture zone in the overburden exhibits a regular trapezoidal feature. From the evolution of void ratio in mining−induced overburden, it can be found that the targeted area for gangue slurry filling in the goaf is mainly within 50 m horizontally form the coal pillars on both sides. within the caving zone on both sides of the goaf. The annual gangue disposal amount for gangue slurry filling in the goaf caving zone of the No. 42208 working face of Liangshuijing Coal Mine is approximately 330 000 tons. The research results can provide a theoretical basis for the efficient adjacent filling of gangue slurry in caving zones of coal mining areas, which promotes the green and low−carbon development of coal resources.

     

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