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Analysis on Rock Burst Risks and Prevention of a 54 m-Wide Coal Pillar for Roadway Protection in a Fully Mechanized Top-Coal Caving Face

机译:岩土防治54米宽煤支柱防治岩爆风险及防治分析

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摘要

A case study based on the 401103 fully mechanized caving face in the Hujiahe Coal Mine was carried out in this research to analyze the rock burst risks in a 54 m-wide coal pillar for roadway protection. Influencing factors of rock burst risks on the working face were analyzed. Stress distribution characteristics on the working face of the wide coal pillar for roadway protection were discussed using FLAC3D numerical simulation software. Spatial distribution characteristics of historical impact events on the working face were also investigated using the microseismic monitoring method. Results show that mining depth, geological structure, outburst proneness of coal strata, roof strata structure, adjacent mining area, and mining influence of the current working face are the main influencing factors of rock burst on the working face. Owing to the collaborative effects of front abutment pressure of the working face and lateral abutment pressure in the goaf, the coal pillar is in the ultimate equilibrium state and microseismic events mainly concentrate in places surrounding the coal pillars. Hence, wide coal pillars become the regions with rock burst risks on the working face. The working face adopts some local prevention technologies, such as pressure relief through presplitting blasting in roof, pressure relief through large-diameter pores in coal seam, coal seam water injection, pressure relief through large-diameter pores at bottom corners, and pressure relief through blasting at bottom corners. Moreover, some regional prevention technologies were proposed for narrow coal pillar for roadway protection, including gob-side entry, layer mining, and fully mechanized top-coal caving face with premining top layer.
机译:在本研究中进行了基于401103综合机械化矿面的案例研究,分析了54米宽的巷道保护中的岩石爆裂风险。分析了工作面上岩石爆裂风险的影响因素。采用FLAC3D数值模拟软件讨论了道路保护宽煤柱工作面的应力分布特性。还使用微震监测方法研究了工作面上的历史冲击事件的空间分布特征。结果表明,采矿深度,地质结构,煤层,屋顶结构,相邻采矿区的爆发,矿区的挖掘,以及当前工作面的采矿影响是岩石爆裂在工作面上的主要影响因素。由于工作面和横向邻接压力在GOAF中的正面邻接压力的协作效果,煤柱处于最终的平衡状态和微震事件,主要集中在煤柱周围的地方。因此,宽煤柱成为工作面上的岩石突发风险的区域。工作面采用一些本地预防技术,如屋顶上的爆破,通过煤层的大直径孔隙,煤层注水,通过大口孔的底部毛孔减压,通过底部的大直径孔隙,减压释放底部角落喷射。此外,提出了一些区域预防技术,为巷道保护窄煤柱,包括GOB侧进入,层挖掘,以及具有高级顶层的综合机械化顶煤洞面。

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