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Cooperative load‐bearing characteristics of a pillar group and a gob pile in partially caved areas at shallow depth

机译:浅度深度的柱子组和羊毛桩的合作承载特性

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Stress concentration in partially caved goaf is the main cause of dynamic pressure accident in the lower seam mining. Aimed at the characteristics of caving in shallow partially caved goaf (PCG) and the specificity of interior load‐bearing structures, a classification criterion of goaf caving was proposed. The characteristics of cooperative load‐bearing in pillar group and gob pile were revealed by numerical calculation, physical simulation, and theoretical analysis. Taking intermittent mining as an example, combined with the deformation behaviors of the main roof and the loading characteristics of waster rock mass, the characteristics of the load‐bearing of gob piles were described in the form of a piecewise function. A FLAC3D model of intermittent mining is modeled to evaluate the stability of pillars, the long‐term stability and distribution laws of overlying loads were revealed through a refined model. The results show that the width of the caved zone bearing the load in the intermittent goaf is about 20?m, and the maximum load‐bearing capacity is 1.055?MPa. The maximum depth of the plastic region in one side of the pillar is 1.48?m, and the load on elastic zone is about 11.33?MPa. This study provides a method for the study of the caving characteristics and load uncertainty in PCG, and the results provide important theoretical values for the safe mining of lower coal seams.
机译:部分塌陷的压力浓度是下缝采矿中动态压力事故的主要原因。旨在探讨浅部分塌陷的GOF(PCG)和内部承载结构的特异性的特点,提出了GOF洞穴的分类标准。通过数值计算,物理模拟和理论分析,揭示了柱组和GOB桩中合作承载的特性。采用间歇采矿作为示例,结合主屋顶的变形行为和瓦尔岩体的装载特性,以分段功能的形式描述了GOB桩的承载的特性。模型间歇采矿的FLAC3D模型以评估柱的稳定性,通过精致模型揭示了上覆载荷的长期稳定性和分布规律。结果表明,轴承载荷的腔内宽度为约20Ω米,最大承载能力为1.055?MPa。柱的一侧的塑料区域的最大深度为1.48Ωm,弹性区的负载约为11.33μm≤MPa。该研究提供了一种研究PCG中的崩落特性和负载不确定性的方法,结果为下煤层的安全开采提供了重要的理论值。

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