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隧道与地下工程灾害防治  2025, Vol. 7 Issue (3): 21-36    DOI: 10.19952/j.cnki.2096-5052.2025.03.02
  研究论文 本期目录 | 过刊浏览 | 高级检索 |
短延时与底部装药对直眼掏槽爆破岩体损伤的影响
周子龙,王培宇*,吴圣刚,蔡鑫,陈翠刚,袁纪锋
中南大学资源与安全工程学院, 湖南 长沙 410083
Influence of short delay time and bottom charge on blast-induced damage of rock mass in parallel cutting blasting
ZHOU Zilong, WANG Peiyu*, WU Shenggang, CAI Xin, CHEN Cuigang, YUAN Jifeng
School of Resources and Safety Engineering, Central South University, Changsha 410083, Hunan, China
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摘要 为改善掏槽爆破孔底岩体破裂效果,建立直眼掏槽爆破三维数值模型,定量分析了延期时间与孔底装药结构对直眼掏槽爆破岩体损伤面积和分布特征的影响。结果表明,在小直径空孔直眼掏槽爆破过程中,随着到自由面距离的增加,岩体损伤范围和爆生裂纹分形维数呈现非线性减小的变化趋势,槽腔底部岩体破裂效果较差。短延时起爆能改善槽腔中下部区域岩体破裂效果,底部岩体损伤面积和分形维数随延期时间由0 ms增加至3 ms呈先升后减趋势,1 ms时效果最佳。延长空孔深度并在超深段设置底部装药可进一步提升槽腔底部岩体破裂程度。在此基础上开展现场试验,结果显示巷道爆破掘进效果显著提升,平均炮孔利用率提高9.1%。
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周子龙
王培宇
吴圣刚
蔡鑫
陈翠刚
袁纪锋
关键词:  掏槽爆破  短延时  底部装药  岩体损伤    
Abstract: To enhance rock fracture at the bottom of the cut cavity, a three-dimensional finite element model of parallel cutting blasting with small-diameter empty holes was developed. The effects of delay time and bottom charge on rock damage area and distribution characteristics during parallel cutting blasting were quantitatively analyzed. The results showed that in parallel cutting blasting with small-diameter empty holes,both the rock damage range and the fractal dimension of blast-induced fractures decreased nonlinearly with increasing distance from the free surface, resulting in poor fracturing effect at the cavity bottom. Short delay initiation was found to enhance rock fracturing at the middle and bottom parts of the rock cavity, with the damage area and fractal dimension of rock at bottom first increased and then decreased as the delay time increased from 0 ms to 3 ms, reaching optimal performance at 1 ms. The empty hole depth was extended and a bottom charge was added in the over-drilled section of the empty holes to further intensify fracturing at the cavity bottom. On this basis, field tests were conducted, and a significant improvement in drift excavation performance was demonstrated, with the average borehole utilization rate increasing by 9.1%.
Key words:  cutting blasting    short delay time    bottom charge    rock damageReceived:2025-03-20    Revised:2025-05-16    Accepted:2025-06-16    Published:2025-09-20
发布日期:  2025-09-19     
中图分类号:  TD235  
基金资助: 国家自然科学基金重点资助项目(52334003)
作者简介:  周子龙(1979— ),男,河南南阳人,教授,博士生导师,博士,国家“万人计划”入选者,主要研究方向为岩体爆破开挖机制与技术. E-mail:zlzhou@csu.edu.cn. *通信作者简介:王培宇(1999— ),男,甘肃张掖人,博士研究生,主要研究方向为岩体爆破开挖机制与技术. E-mail:245501011@csu.edu.cn
引用本文:    
周子龙,王培宇,吴圣刚,蔡鑫,陈翠刚,袁纪锋. 短延时与底部装药对直眼掏槽爆破岩体损伤的影响[J]. 隧道与地下工程灾害防治, 2025, 7(3): 21-36.
ZHOU Zilong, WANG Peiyu, WU Shenggang, CAI Xin, CHEN Cuigang, YUAN Jifeng. Influence of short delay time and bottom charge on blast-induced damage of rock mass in parallel cutting blasting. Hazard Control in Tunnelling and Underground Engineering, 2025, 7(3): 21-36.
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http://tunnel.sdujournals.com/CN/Y2025/V7/I3/21
[1] 谢和平. 深部岩体力学与开采理论研究进展[J]. 煤炭学报, 2019, 44(5): 1283-1305. XIE Heping.Research review of the state key research development program of China:deep rock mechanics and mining theory[J]. Journal of China Coal Society, 2019, 44(5): 1283-1305.
[2] 周子龙, 王少锋, 蔡鑫, 等. 深部金属矿异构环境爆破开采诱发岩体动力灾害防控[J]. 中国有色金属学报, 2025, 35(1): 306-322. ZHOU Zilong, WANG Shaofeng, CAI Xin, et al. Control for rock dynamic disasters induced by blasting mining disturbance under heterogeneous condition in deep metal mines[J]. The Chinese Journal of Nonferrous Metals, 2025, 35(1): 306-322.
[3] 蔡鑫, 陈立业, 周子龙, 等. 扰动诱发高应力岩石动力响应及岩爆灾变机制[J]. 中国有色金属学报, 2024, 34(7): 2463-2475. CAI Xin, CHEN Liye, ZHOU Zilong, et al. Dynamic response of high stress rock induced by disturbance and mechanism of rockburst disaster[J]. The Chinese Journal of Nonferrous Metals, 2024, 34(7): 2463-2475.
[4] 冷振东, 高启栋, 卢文波, 等. 岩石钻孔爆破能量调控理论与应用技术研究进展[J]. 金属矿山, 2023(5): 64-76. LENG Zhendong, GAO Qidong, LU Wenbo, et al. Research progress in theory and technology of energy regulation for rock drilling and blasting[J]. Metal Mine, 2023(5): 64-76.
[5] 王雁冰, 张航, 杨仁树, 等. 掏槽孔超深深度对爆破效果的影响[J]. 工程科学学报, 2023, 45(2): 182-194. WANG Yanbing,ZHANG Hang,YANG Renshu,et al.Experiment study on overdepth coefficient of the cut hole in coal mine roadway excavation blasting[J].Chinese Journal of Engineering, 2023, 45(2): 182-194.
[6] 杨仁树. 我国煤矿岩巷安全高效掘进技术现状与展望[J]. 煤炭科学技术, 2013, 41(9): 18-23. YANG Renshu. Present status and outlook on safety and high efficient heading technology of mine rock roadway in China[J]. Coal Science and Technology, 2013, 41(9): 18-23.
[7] 孙港, 王军祥, 孟祥竹, 等. 基于近场动力学理论的岩石双孔爆破动态断裂行为数值模拟[J]. 隧道与地下工程灾害防治, 2023, 5(2): 42-58. SUN Gang, WANG Junxiang, MENG Xiangzhu, et al.Numerical simulation of dynamic fracture behavior of rock dual-hole blasting based on peridynamic theory[J]. Hazard Control in Tunnelling and Underground Engineering, 2023, 5(2): 42-58.
[8] 田瑞端, 莫冠旺, 李响. 超大断面扁平结构隧道矿山法超欠挖优化控制研究[J]. 隧道与地下工程灾害防治, 2024, 6(2): 84-98. TIAN Ruiduan, MO Guanwang, LI Xiang. Optimization on the over/under-excavation of flat and super-large cross-section tunnel with drill and blast method[J]. Hazard Control in Tunnelling and Underground Engineering, 2024, 6(2): 84-98.
[9] 杨仁树, 丁晨曦, 杨立云, 等. 岩石爆破基础理论研究进展[J]. 工程爆破, 2024, 30(5): 11-19. YANG Renshu, DING Chenxi, YANG Liyun, et al. Research progress on the fundamental theory of rock blasting[J]. Engineering Blasting, 2024, 30(5): 11-19.
[10] 卢文波, 孟婷, 胡英国. 岩石爆破破碎模拟和块度预报的研究现状与展望[J]. 工程爆破, 2024, 30(5): 20-28. LU Wenbo, MENG Ting, HU Yingguo. A review of numerical simulation of rock fragmentation by blasting and prediction of fragments[J]. Engineering Blasting, 2024, 30(5): 20-28.
[11] 李萍丰, 谢守冬, 张宣, 等. 适用于矿山爆破的“悟空” 大模型构建及其平台研发[J]. 金属矿山, 2025(1): 153-159. LI Pingfeng, XIE Shoudong, ZHANG Xuan, et al. Construction and platform development of “Wukong” large model suitable for mine blasting[J]. Metal Mine, 2025(1): 153-159.
[12] 何松林, 杨仁树, 丁晨曦, 等. 金属矿山硬岩巷道分阶段掏槽爆破数值模拟研究[J]. 煤炭科学技术, 2024, 52(增刊1): 37-46. HE Songlin, YANG Renshu, DING Chenxi, et al. Numerical simulation study on staged cut blasting of hard rock roadway in metal mine[J]. China Industrial Economics, 2024, 52(Suppl.1): 37-46.
[13] 陈璐, 周子龙, 高山, 等. 高应力隧道爆破研究现状与展望[J]. 中南大学学报(自然科学版), 2023, 54(3): 849-865. CHEN Lu, ZHOU Zilong, GAO Shan, et al. Research status and prospects of blasting excavation of tunnel under high stress condition[J]. Journal of Central South University(Science and Technology), 2023, 54(3): 849-865.
[14] 戴俊, 杨永琦. 三角柱直眼掏槽爆破参数研究[J]. 爆炸与冲击, 2000, 20(4): 364-368. DAI Jun, YANG Yongqi. Researches on blasting parameters of triangle burn cut[J]. Explosion and Shock Waves, 2000, 20(4): 364-368.
[15] 汪旭光, 吴春平. 我国爆破行业发展成就、挑战与机遇[J]. 中国矿业, 2024, 33(12): 1-9. WANG Xuguang,WU Chunping.Blasting industry in China: achievements, challenges and opportunities[J]. China Mining Magazine, 2024, 33(12): 1-9.
[16] 谢先启. 我国爆破行业高质量发展若干问题探讨[J]. 工程爆破, 2024, 30(5): 1-10. XIE Xianqi. Discussion on several issues of high-quality development of the explosives and blasting industry in China[J]. Engineering Blasting, 2024, 30(5): 1-10.
[17] 宗琦, 张国勇. 岩巷掘进中深孔爆破中的掏槽和光爆问题[J]. 淮南工业学院学报, 2001, 21(2): 18-21. ZONG Qi, ZHANG Guoyong. Study on some techniques of cutting blasting and smooth blastling of medium-deep blasting in rock tunnel[J]. Journal of Huainan Institute of Technology, 2001, 21(2): 18-21.
[18] CHAKRABORTY A K, PAL ROY P, JETHWA J L, et al. Blast performance in small tunnels-a critical evaluation in underground metal mines[J]. Tunnelling and Underground Space Technology, 1998, 13(3): 331-339.
[19] 张召冉, 王岩, 刘国庆. 空孔对直眼掏槽参数及爆破效果的影响研究[J]. 爆炸与冲击, 2023, 43(1): 141-156. ZHANG Zhaoran, WANG Yan, LIU Guoqing. Theoretical study of the influence of empty-hole on both the blasting parameters and the blasting effect of straight-hole cutting[J]. Explosion and Shock Waves, 2023, 43(1): 141-156.
[20] 胡峰. 井巷快速掘进应用光面爆破的初步研究与试验(中)[J]. 化工矿山技术, 1977, 6(2): 11-17.
[21] 费鸿禄, 邓政, 蒋安俊, 等. 硬岩巷道深孔掏槽数值模拟与试验研究[J]. 爆破, 2019, 36(1): 29-37. FEI Honglu, DENG Zheng, JIANG Anjun, et al. Numerical simulation and experimental study on deep hole cutting in hard rock roadway[J]. Blasting, 2019, 36(1): 29-37.
[22] 林大能, 陈寿如. 直眼掏槽效率敏感因子的理论与试验分析[J]. 煤炭学报, 2005, 30(1): 40-43. LIN Daneng, CHEN Shouru. Theoretical and testing study on factors affecting parallel hole cut blasting[J]. Journal of China Coal Society, 2005, 30(1): 40-43.
[23] HONG Z X, TAO M, ZHAO M S, et al. Numerical modelling of rock fragmentation under high in-situ stresses and short-delay blast loading[J]. Engineering Fracture Mechanics, 2023, 293: 109727.
[24] 温晨, 乔秋秋, 邱贤阳, 等. 深井扇形组合孔短延时爆破裂纹扩展模拟研究[J]. 矿冶工程, 2023, 43(1): 26-31. WEN Chen, QIAO Qiuqiu, QIU Xianyang, et al. Simulation of crack propagation induced by short delay blasting with blastholes in a combined fan pattern for deep well[J]. Mining and Metallurgical Engineering, 2023, 43(1): 26-31.
[25] ZHANG H, LI T C, DU Y T, et al. Theoretical and numerical investigation of deep-hole cut blasting based on cavity cutting and fragment throwing[J]. Tunnelling and Underground Space Technology, 2021, 111: 103854.
[26] ZHANG H, LI T C, WU S, et al. A study of innovative cut blasting for rock roadway excavation based on numerical simulation and field tests[J]. Tunnelling and Underground Space Technology, 2022, 119: 104233.
[27] 邱薛, 刘晓辉, 胡安奎, 等. 煤岩动态RHT本构模型数值模拟研究[J]. 煤炭学报, 2024, 49(增刊1): 261-273. QIU Xue, LIU Xiaohui, HU Ankui, et al. Research on numerical simulation of coal dynamic RHT constitutive model[J]. Journal of China Coal Society, 2024, 49(Suppl.1): 261-273.
[28] 李洪超, 陈勇, 刘殿书, 等. 岩石RHT模型主要参数敏感性及确定方法研究[J]. 北京理工大学学报, 2018, 38(8): 779-785. LI Hongchao,CHEN Yong,LIU Dianshu,et al. Sensitivity analysis determination and optimization of rock RHT parameters[J]. Transactions of Beijing Institute of Technology, 2018, 38(8): 779-785.
[29] HONG Z X, TAO M, CUI X J, et al. Experimental and numerical studies of the blast-induced overbreak and underbreak in underground roadways[J]. Underground Space, 2023, 8: 61-79.
[30] LAN R Y, CHENG R S, ZHOU Z L, et al. Damage and fragmentation of rock under multi-long-hole blasting with large empty holes[J]. Rock Mechanics and Rock Engineering, 2024, 57(9): 7603-7622.
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