煤炭工程 ›› 2026, Vol. 58 ›› Issue (8): 142-150.doi: 10.11799/ce202608018

• 研究探讨 • 上一篇    下一篇

不同孔径控制孔对爆破增透效果的影响研究

余云飞,高 魁,王有为,张先跃,王 秘   

  1. 1. 安徽理工大学 安全科学与工程学院,安徽 淮南 232001

    2. 中国矿业大学 煤矿瓦斯与火灾防治教育部重点实验室,江苏 徐州 221116

    3. 深部煤炭安全开采与环境保护全国重点实验室,安徽 淮南 232000

  • 收稿日期:2026-03-12 修回日期:2026-06-09 出版日期:2026-08-15 发布日期:2026-08-31
  • 通讯作者: 余云飞 E-mail:yunfeiyu1218@163.com

Experimental study on the influence of control hole diameter on blasting permeability enhancement effect#br# #br#

  • Received:2026-03-12 Revised:2026-06-09 Online:2026-08-15 Published:2026-08-31

摘要:

针对复杂应力环境下深孔爆破的爆炸能量大部分收缩于粉碎区,无法有效用于煤层裂纹扩展的问题,开展了控制孔孔径对爆破增透效果影响试验研究。基于爆破荷载下控制孔的作用机理,利用自主搭建的相似模拟试验平台进行了无控制孔、普通控制孔与扩孔三组对比试验, 得出了爆破过程中裂纹扩展特征、应力波传播及煤体损伤演化规律。结果表明:控制孔的存在可引导爆生裂纹沿爆破孔与控制孔连线方向扩展,形成贯通主裂隙;2#测点处,扩孔试块、控制孔试块相对于无控制孔试块的拉应变峰值分别增加了36.4%16%,表明控制孔孔径增大可显著增强控制孔周围的应力集中效应,提高拉伸应力幅值,促进两孔之间交叉裂隙网络的形成;超声波反演结果显示,爆破后各模型在S2检测面的波速减少程度分别为30.46%36.92%42.78%,扩孔试块在两孔之间的损伤更为显著,表明大孔径控制孔能更有效地提升爆炸能量利用率与增透范围。研究结果可为高瓦斯煤层控制爆破的参数优化提供试验依据。

关键词: 控制孔孔径, 裂纹扩展, 应力传播, 爆破增透

Abstract:

Aiming at the problem that most of the explosion energy of deep hole blasting in complex stress environment shrinks in the crushing zone and cannot be effectively used in the crack propagation of coal seam, the influence of control hole diameter on the antireflection effect of blasting is studied. Based on the mechanism of control hole under blasting load, three groups of comparative tests were carried out by using the self-built similar simulation test platform without control hole, ordinary control hole and reaming. The crack propagation characteristics, stress wave propagation and coal damage evolution law in the blasting process were obtained. The results show that the existence of the control hole can guide the blasting crack to expand along the direction of the connection between the blasting hole and the control hole, forming a penetrating main crack. At the 2# measuring point, the peak tensile strain of the reaming test block and the control hole test block increased by 36.4% and 16% respectively compared with the non-control hole test block, indicating that the increase of the control hole diameter can significantly enhance the stress concentration effect around the control hole, increase the tensile stress amplitude, and promote the formation of the cross-fracture network between the two holes. The ultrasonic inversion results show that the wave velocity reduction of each model on the S2 detection surface after blasting is 30.46%, 36.92% and 42.78%, respectively. The damage of the reaming test block between the two holes is more significant, indicating that the large-aperture control hole can more effectively improve the explosion energy utilization rate and anti-reflection range. The research results can provide experimental basis for parameter optimization of controlled blasting in high gas coal seam.

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