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The analysis and application of granular backfill material to reduce surface subsidence in China’s northwest coal mining area

机译:西北煤矿区降低地面沉降的颗粒状回填材料的分析与应用

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摘要

In China’s northwest coal mining area, the excavation of shallow buried thick coal seams has caused serious damage to the phreatic water layer and induced deterioration of the ecological environment. Backfilling is a basic method of controlling the loss of groundwater and reducing surface subsidence. In order to reduce the porosity of the backfill material and control the compression ratio of the backfill body, the grain gradation of the local aeolian sand was studied based on the geological conditions of the shallow buried coal seam in the Yulin mining area, Shaanxi province. Subsequently, aeolian sand was selected as the backfilling aggregate, and tests were implemented. The optimum proportion and slurry concentration of the backfill material were then obtained. The engineering application shows that the strength and stability of the backfill body based on the close packing theory can satisfy the requirements of supporting the overlying strata, and the integrity of overburden strata is competent. The maximum accumulated surface subsidence was measured to be 38mm, indicating that the aeolian sand-based backfill material in shallow and thick underground coal seam mining is able to protect the eco-environment and control the geo-environmental hazards, which are critical for the sustainable development of the mining industry and economic growth.
机译:在中国西北部的煤矿区,浅埋厚煤层的开挖对潜水水层造成了严重破坏,并导致了生态环境的恶化。回填是控制地下水流失和减少地面沉降的一种基本方法。为了降低回填材料的孔隙率并控制回填体的压缩比,根据陕西榆林矿区浅埋煤层的地质条件,研究了局部风沙的颗粒级配。随后,选择风沙作为回填骨料,并进行了测试。然后获得回填材料的最佳比例和浆液浓度。工程应用表明,基于密堆积理论的回填体强度和稳定性可以满足上覆地层的支护要求,覆盖层的完整性是合理的。测得的最大累积地面沉降为38mm,这表明浅层和厚层地下煤层开采中的风沙基回填材料能够保护生态环境并控制地质环境危害,这对于可持续发展至关重要。矿业发展和经济增长。

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