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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Surrounding rock control mechanism in the gob-side retaining entry in thin coal seams, and its application
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Surrounding rock control mechanism in the gob-side retaining entry in thin coal seams, and its application

机译:薄煤层中的GOB侧保持入口处的周围岩体控制机制及其应用

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摘要

The stability of the roadside filling body is the key to successful gob-side entry retention in a thin coal seam. However, the existing failure mechanism of the roadside filling body is unclear, and no proactive measures for the high-stress regulation of the roadway-surrounding rock have been proposed. Taking the 2704N working face of Xinyang mine, China, as an example, this study aimed to elucidate the failure mechanism and characterize the mechanical environment of the roadside filling body in order to implement proactive stress adjustment in gob-side entry retention and measures for the structural control of the surrounding rock. The mode of failure of the roadside filling body was analysed, and numerical simulations and field experiments were subsequently performed to characterize the stress environment of the roadside filling body under caving and gob-filling conditions. Finally, regulatory measures for regional stress were proposed. The results showed that adjusting the three-dimensional stress fields in the surrounding rock causes the majority of the principal deviatoric stress to concentrate on the filling body, thus causing the surrounding rock to fail. Therefore, decreasing the subsidence space of the roof strata and preventing the accumulation of excessive principal deviatoric stress on the roadside filling body are crucial for regulating the regional field stress in gob-side entry retention and structurally controlling the roadway-surrounding rock. After gob filling, neighbouring units in the 'coal-roadside filling body-immediate roof-filling body in the gob' support system jointly form a skeleton structure that supports the overlying rock through contact force. A powerful force chain network is stored in the skeleton structure. The strong force chains in the gob-filling body bear the majority of the stress imparted by the overlying rock. Relative movement between key blocks is restricted because the key blocks compress each other. Thus, the principal deviatoric stress on the roadside filling body decreases and stability is significantly improved. A new technology that combines a mechanized gob-side entry in a thin coal seam and proactive roof guarding in the gob filling behind the hydraulic supports was designed in accordance with the 'green mining' concept of underground separation of coal from gangue and the requirements for pumped filling materials. The results of this study contribute to the theory and technology of gob-side entry retention and provide a basis for an effective stress adjustment and structural control method in the gob-side entry retention area.
机译:路边填充体的稳定性是薄煤层中成功的GOB侧入口保留的关键。然而,路边填充体的现有故障机制尚不清楚,并且已经提出了道路周围岩石的高应力调节的积极措施。以中国信阳矿的2704N工作面为例,为一个例子,这项研究旨在阐明失效机制,并表征路边填充体的机械环境,以便在GOB侧进入保留和措施中实施积极的应力调整周围岩石的结构控制。分析了路边填充体的故障模式,随后进行了数值模拟和现场实验,以表征路边填充体的应力环境和GOB填充条件。最后,提出了区域压力的监管措施。结果表明,调整周围岩石中的三维应力场导致大部分主要偏离的应力集中在填充体上,从而导致周围的岩石失效。因此,降低屋顶地层的沉降空间,并防止在路边填充体上积聚过大的主体偏离应力对于调节GOB侧进入保留和结构上的巷道周围岩石的区域应力至关重要。在GOB填充后,在GOB的支撑系统中“煤道路填充身体立即填充体”中的邻近单元共同形成骨架结构,通过接触力支撑上覆岩石。强大的力链网络存储在骨架结构中。 GOB填充体中的强力链承受着覆盖岩石赋予的大部分压力。密钥块之间的相对移动受到限制,因为密钥块彼此压缩。因此,路边填充体上的主要偏离应力降低,稳定性显着提高。一种新的技术,将机械化的GOB侧进入在薄煤层中的薄煤层和主动屋顶守卫,根据“绿化矿业”的煤矸石的地下分离的“绿色矿业”的概念和要求,设计泵送填充材料。该研究的结果有助于GOB侧进入保留的理论和技术,为GOB侧进入保留区域进行有效应力调整和结构控制方法提供基础。

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