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Strata and surface influence range of deep coal mining for mine land reuse

机译:深部煤矿用地再利用的地层和地表影响范围

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摘要

Determining the strata and surface movement of deep mining can provide a scientific basis for wellbore protection and mine land utilization. In this paper, numerical simulation methods were employed to investigate the stratum and surface movement boundary curves of deep caving and backfilling mining. The findings can be concluded in three aspects. First, the stratum and surface movement boundaries of deep caving and backfilling mining were all curved and conformed to an exponential function, but the influence range of strata and surface movement of deep different mining methods were different. Second, the backfilling rate of deep backfilling mining had an impact on movement boundary boundaries of strata and surface. With the backfilling rate decreasing, the influence range of strata and surface movement boundary were increased. Last, the research results were applied to a case to confirm the new approach of determining the influence range of strata and surface movement of deep mining. The example application shows that it not only can ensure the safe production of the wellbore, but also can enhance the reuse area of the mine field.
机译:确定深部开采的地层和地表运动可为井筒保护和矿区利用提供科学依据。本文采用数值模拟方法研究了深部崩落充填开采的地层和地表运动边界曲线。研究结果可以从三个方面得出结论。(1)深部崩落充填开采的地层和地表运动边界均呈弯曲状,符合指数函数,但不同深部开采方式的地层和地表运动影响范围不同;(2)深部充填开采回填速率对地层和地表的运动边界有影响;随着回填速率的降低,地层和地表运动边界的影响范围增大。最后,将研究成果应用于一个案例,以验证深部开采地层和地表运动影响范围的确定新方法。实例应用表明,它不仅可以保证井筒的安全生产,而且可以提高矿场的再利用面积。

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