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动静载作用下巷道围岩变径钻孔卸压耗能规律研究。

Study on the pressure relief energy dissipation law of variable-diameter boreholes in roadway surrounding rock under dynamic and static loads.

机构信息

School of Mechanics and Engineering, Liaoning Technical University, Fuxin, Liaoning, China.

School of Physics, Liaoning University, Shenyang, Liaoning, China.

出版信息

PLoS One. 2024 Sep 6;19(9):e0306449. doi: 10.1371/journal.pone.0306449. eCollection 2024.

Abstract

To address the conflict between pressure relief and support effectiveness caused by large-diameter boreholes in roadway surrounding rock, this paper proposes a method involving variable-diameter boreholes for pressure relief and energy dissipation. With a typical rock burst coal mine as the engineering context, the study establishes a mechanical model for variable-diameter boreholes through theoretical analysis to examine the elastic stress distribution around boreholes within the coal body. Physical similarity simulation tests are conducted to investigate the influence of conventional borehole and variable diameter borehole on the transmission pattern of dynamic load stress waves. Furthermore, numerical simulations are employed to explore the effects of reaming diameter, depth, and spacing on pressure relief, energy dissipation, and attenuation of dynamic stress wave transmission in roadway surrounding rock. The results demonstrate that stress within the coal surrounding the variable-diameter borehole correlates with the borehole radius, lateral pressure coefficient, and distance from the point to the borehole center, the extent of the plastic zone is influenced by borehole diameter, spacing, and depth. Increased diameter, reduced spacing, and greater depth of deep reaming holes exacerbate the transfer of stress concentration from the surrounding rock of the roadway to the deeper regions, facilitating the formation of stress double peak areas. Moreover, the variable diameter position should be within the original stress peak position of the surrounding rock in the roadway, with deep reaming passing through the stress concentration area for optimal results. This study offers guidance on the prevention and control technology for rock bursts in deep coal mining operations.

摘要

为了解决巷道围岩大孔径钻孔卸压与支撑效果之间的矛盾,提出了一种变径钻孔卸压与能量耗散方法。以典型冲击地压煤矿为工程背景,通过理论分析建立了煤体中变径钻孔的力学模型,研究了常规钻孔和变径钻孔对动载应力波传播方式的影响。进一步采用数值模拟研究了扩孔直径、深度和间距对巷道围岩卸压、能量耗散和动载应力波传播衰减的影响。结果表明,变径钻孔围岩的应力与钻孔半径、侧压系数和距钻孔中心的距离有关,塑性区的范围受钻孔直径、间距和深度的影响。增大扩孔直径、减小间距和增大深孔深度会加剧应力集中从巷道围岩向深部转移,有利于形成应力双峰区。此外,变径位置应处于巷道围岩原有的应力峰值位置,深孔扩孔应穿过应力集中区,效果最佳。本文为深部煤矿冲击地压防治技术提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59f3/11379278/53dfb976bb2c/pone.0306449.g001.jpg

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