采矿与安全工程学报 ›› 2013, Vol. 30 ›› Issue (5): 735-738.

• 论文 • 上一篇    下一篇

倾斜煤层防水煤岩柱尺寸留设的技术优化研究

  

  1. 中国矿业大学(北京)资源与安全工程学院,北京 100083
  • 出版日期:2013-09-15 发布日期:2013-10-01
  • 作者简介:王志强(1980-),男,内蒙古呼伦贝尔人,讲师,博士,硕士生导师,从事现代采矿技术、长壁工作面矿压理论研究。 E-mail:wzhiqianglhm@126.com Tel: 13810796225
  • 基金资助:

    中央高校基本科研业务费专项资金项目—青年教师科研专项(2011QZ06);国家级大学生创新训练计划项目(201211413014)

Research on reasonable size of waterproof pillar in mining inclined coal seam

  • Online:2013-09-15 Published:2013-10-01

摘要: 采用传统方法对4#煤层需要留设的防水煤岩柱尺寸进行计算,分析结果认为传统方法对于倾斜煤层防水煤柱中央弹性核区存在重复计算的问题,因此造成留设的防水煤柱尺寸偏大。为了改善传统方法存在的弊端,在保证安全的前提下对4#煤层屈服区尺寸进行计算并考虑覆岩移动角度的影响,得到设计方法优化后的防水煤岩柱尺寸。为了进一步提高采区回采率,综合分析煤柱留设的共性问题,提出巷道布置的优化方案。研究结果表明,设计优化后留设防水煤柱的尺寸仅为原方法的42.42%,综合起坡段带来的三角煤损结合防水煤岩柱尺寸,优化后的煤炭损失仅为原方法煤炭损失的45.42%,按照采区设计的推进长度计算,相邻工作面之间可多采出煤炭资源近 1.58 Mt。另外,优化方案中起坡段回采工艺可以改善工作面倾角大带来的设备稳定性的问题。

关键词: 倾斜煤层, 防水煤柱, 覆岩移动角, 屈服区, 巷道布置

Abstract: In the study, we calculated the pillar size of 4# coal seam with the traditional method, the analysis result showed that repeated calculation was existed in calculation of the central elastic area of the waterproof pillar in inclined seam, which results in oversized waterproof pillar left. In order to improve the disadvantages of traditional methods, in the premise of ensuring safety, we calculated the yield zone size of 4# seam, considered the impact of the overburden rock moving angle and we obtained the reasonable waterproof pillar size after the design method had been optimized. In order to further improve the recovery rate in the mining area, we comprehensively analyzed the common problems of coal pillar design and proposed optimization. Findings showed that the size of waterproof coal pillars after the design was optimized is only 42.42% of the size calculated in traditional method. Integrated the triangle coal loss of the slope segment and combined with a waterproof coal pillar size, coal loss after optimization is only 45.42% of the one in traditional method. It is calculated according to the push length of the mining area designed that nearly more than 1.58 Mt of coal can be mined between the adjacent faces. In addition, the recovery technology from the slope sections can improve the stability of equipments, which caused by the large inclination in working face.

Key words: inclined coal seam, waterproof pillar, overlying rock moving angle, yielded zone, roadway layout