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Research on Coal Pillar Malposition Distance Based on Coupling Control of Three-Field in Shallow Buried Closely Spaced Multi-Seam Mining, China

机译:基于浅埋浅埋近距离多煤矿业三场三场耦合控制的煤柱母距离研究

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摘要

In order to explore the rational coal pillar malposition distance (CPMD) based on coupling control of stress field, displacement field and fracture field (three-field) in shallow buried closely spaced multi-seam (SBCSM-S) mining, and realize coupling control of underground concentrated stress and ground surface fractures, taking the No. 1⁻2 and No. 2⁻2 coal seams mining in the northward east area of Ningtiaota coal mine as background, through physical simulation and theoretical analysis, the three-field evolution in SBCSM-S mining was analysed, the effect of different CPMD on coal pillar concentrated stress, ground surface subsidence and fractures development was revealed, and the rational CPMD based on coupling control of three-field was put forward. The results show that the concentrated fractures and concentrated stress are due to the strata’s uneven subsidence by coal pillars. Rational arrangement of CPMD can avoid the superposition of vertical stress caused by upper and lower coal pillars and reduce the development of ground fractures and uneven subsidence. Two theoretical models were established: one was based on the control of a concentrated stress field, the other on the control of the displacement and fracture fields. These results will be applied in a follow-up arrangement at the Ningtiaota coal mine, and can provide a new way for safe and green mining in SBCSM-S.
机译:为了基于浅埋在浅埋的多煤层(SBCSM-S)采矿中应力场,位移场和裂缝(三场)耦合控制的基于应力场,位移场和裂缝(三场)的耦合控制,实现耦合控制,以探索合理煤柱的距离(CPMD),并实现耦合控制地下浓缩应力和地面骨折,采用宁天煤矿向北地区的12和22煤层挖掘作为背景,通过物理仿真和理论分析,三场演化分析了SBCSM-S采矿,揭示了不同CPMD对煤柱浓缩应力,地表沉降和裂缝发育的影响,提出了基于三场耦合控制的理性CPMD。结果表明,浓缩的骨折和浓缩应力是由于地层的煤柱的不均匀沉降。 CPMD的合理布置可以避免上下煤柱引起的垂直应力的叠加,并降低地面骨折的发展和不均匀的沉降。建立了两种理论模型:一个是基于浓缩应力场的控制,另一个基于位移和骨折场的控制。这些结果将在宁静煤矿的后续安排中应用,可为SBCSM-S安全和绿化提供一种新的方式。

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  • 作者

    Qingxiang Huang; Jian Cao;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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