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隧道周边孔空孔导向孔间爆生裂纹扩展机制研究OA

Blast-induced Crack Propagation Mechanism Between Tunnel Perimeter Holes Guiding Effect of Empty Holes

中文摘要英文摘要

隧道钻爆法施工中,周边孔孔间爆生裂纹扩展贯通效果决定爆破开挖轮廓面的成形质量.为探究空孔对隧道周边孔孔间爆生裂纹扩展规律及贯通效果的影响机制,首先基于隧道周边孔空孔导向双孔起爆裂纹扩展模型试验,研究有/无空孔导向下周边孔孔间裂纹扩展贯通效果,并分析炮孔间距L及不耦合系数K对孔间裂纹扩展贯通的影响机制;其次通过数值模拟研究有/无空孔导向下孔间应力波传播规律,并进一步揭示空孔对于孔间裂纹扩展贯通的导向机制.结果表明:无空孔导向时,当K=2.0且L=11D(炮孔直径)或K=1.25/1.5且L=13D时,炮孔间裂纹贯通效果相对较好;有空孔导向时,当K=1.5且L=13D时,空孔的导向作用最为显著,炮孔间形成与炮孔连心线几乎重合的平整贯通裂纹;空孔孔壁处反射拉伸波与后续入射波叠加形成的应力集中效应使孔间裂纹扩展路径向炮孔连心线方向偏转,从而实现对炮孔间裂纹扩展贯通的导向作用;此外,空孔导向下周边孔裂纹区半径明显小于无空孔工况,表明空孔具有引导周边孔孔间裂纹定向贯通并抑制其沿非预期方向扩展的双重调控机制.

The quality of tunnel contour surfaces in drilling and blasting construction is fundamentally governed by the propagation efficiency and coalescence behavior of fractures generated between perimeter blast holes.This re-search employed physical modeling and computational analysis to investigate the influence of empty holes around a tunnel perimeter on the propagation law and coalescence effectiveness of cracks.Firstly,comparative model experi-ments were conducted to evaluate crack propagation and coalescence effectiveness between perimeter holes with and without relief-hole guidance,and to systematically analyze how blast-hole spacing(L)and the decoupling coefficient(K)affect these processes.Subsequently,numerical simulations were employed to study the stress wave propagation between holes under both configurations,thereby elucidating the fundamental mechanisms through which empty holes optimize fracture propagation paths and enhance coalescence effectiveness.Results indicate that effective crack coa-lescence between blast holes occurs under two parameter sets without empty hole guidance,K=2.0 with L=11D or K=1.25/1.5 with L=13D,where D denotes blast hole diameter.The empty hole guidance demonstrates optimal performance at K=1.5 and L=13D,producing a smoothly coalesced crack that aligns nearly perfectly with the inter-hole connecting line.The observed guiding phenomenon results from stress concentrations at the empty-hole walls,where superimposed reflected tensile waves and incident waves redirect fracture paths toward the inter-hole center-lines,thereby controlling crack propagation trajectories and coalescence patterns.Both experimental modeling and computational analysis revealed that the radius of the crack zone around the perimeter holes under empty-hole guid-ance was significantly smaller than under conventional blasting,demonstrating their dual functionality in simultane-ously directing inter-hole crack coalescence while restricting undesirable radial fracture propagation.

颜晓明;董千;董曼平;徐小龙;潘关勇;孙金山;姚颖康;魏东

湖北交投建设集团有限公司,武汉 430070江汉大学 精细爆破国家重点实验室,武汉 430056||江汉大学 湖北(武汉)爆炸与爆破技术研究院,武汉 430056湖北交投建设集团有限公司,武汉 430070江汉大学 精细爆破国家重点实验室,武汉 430056||江汉大学 湖北(武汉)爆炸与爆破技术研究院,武汉 430056湖北交投建设集团有限公司,武汉 430070江汉大学 精细爆破国家重点实验室,武汉 430056||江汉大学 湖北(武汉)爆炸与爆破技术研究院,武汉 430056江汉大学 精细爆破国家重点实验室,武汉 430056||江汉大学 湖北(武汉)爆炸与爆破技术研究院,武汉 430056湖北交投建设集团有限公司,武汉 430070

矿业与冶金

隧道爆破周边孔空孔导向裂纹扩展模型试验数值模拟

tunnel blastingperimeter holesempty holes guidancecrack propagationmodel testnumerical simulation

《爆破》 2026 (2)

14-25,12

湖北省教育厅科研计划重点项目(D20234404) Key Scientific Research Project of Hubei Provincial Department of Education(D20234404)

10.3963/j.issn.1001-487X.2026.02.002

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