煤炭工程 ›› 2017, Vol. 49 ›› Issue (8): 103-104.doi: 10.11799/ce201708029

• 研究探讨 • 上一篇    下一篇

近距离房采煤柱下回采巷道失稳机理数值模拟研究

余学义,张冬冬   

  1. 西安科技大学
  • 收稿日期:2016-09-05 修回日期:2016-12-12 出版日期:2017-08-25 发布日期:2017-09-25
  • 通讯作者: 余学义 E-mail:yuxy@xust.edu.cn

Instability Mechanism of Road Way in Proximity Underlying the Room Mining Pillars

  • Received:2016-09-05 Revised:2016-12-12 Online:2017-08-25 Published:2017-09-25

摘要: 近距离房采煤柱下长壁开采将受到工作面顶板动压和上覆煤柱集中应力的共同影响,导致工作面剧烈来压从而引发回采巷道失稳事故。针对神东矿区大柳塔矿22202工作面潜在的巷道失稳事故问题,采用数值模拟研究了房采煤柱下长壁开采顶板的应力演化及运动规律,分析了回采巷道围岩的应力和变形特征。研究结果表明,工作面进入房采煤柱下方后,支承应力峰值点超前工作面距离会显著减小,造成超前支承峰值和工作面的顶板力叠加,在顶板来压和叠加应力共同作用下将引发巷道失稳事故|在房采煤柱采空区边缘前后20m范围内顶板运动和应力分布不稳定,巷道失稳事故发生的规律性差|远离采空区边缘60m后,顶板来压周期性明显,巷道失稳事故会周期性地发生。

关键词: 房采煤柱, 长壁开采, 应力演化, 巷道失稳, 数值模拟

Abstract: Abstract The longwall mining under the room pillars is affected by both the active mining induced stresss and upper pillars’ concentrated stress, leading to instability accidents of road way due to the severe roof pressure. Based on the issues of possible instability accidents of road way in the No.22202 working face in the Daliuta Coal Mine, the methods of numerical simulation were applied to the mechanism of mining induced stress evolution and instability accidents. The result shows that with working face under the coal pillars, the advanced distance of bearing pressures’ peak point will significantly reduce, resulting in the superposition of roof stress and the bearing peak stress. Roof weighting and the superimposed stress contribute to instability accidents of road way. In the 20 m range of the front and back of the edge of the coal pillars, instability of roof movement and stress causes no apparent regularity of instability accidents. With the working face away from the edge of the mining gob after 60 m, the instability accidents will happen periodically because of the obviously periodical roof pressure.

Key words: room mining pillar, longwall mining, stress evolution, instability of road way, numerical simulation

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