基于SPH-FEM的高瓦斯隧道掏槽孔延期时间优化Optimization of Delay Time of Cutting Hole in High Gas Tunnel based on SPH-FEM Coupled Simulation
孙永,姬中海,田成林,赵子龙,王杰,李中辉,王子龙
摘要(Abstract):
目前在高瓦斯隧道中,起爆时间通常按照0 ms、25 ms、50 ms、75 ms、100 ms进行设置,但该延期段数少于炮孔排数,使得部分辅助孔共用一个起爆延期且掏槽孔延期时间不足,导致爆破效果难以达到预期。为此,引入了现场可自由设置起爆延期的煤矿许用数码电子雷管,利用理论分析求得了掏槽区岩体完全剖出所需时间,并通过数值模拟对岩体运移规律进行了分析,确定了掏槽区最佳延期时间为40 ms。研究表明:掏槽区岩体运移情况可分为裂隙扩展、体积增大、岩体抛出三阶段;根据掏槽区最佳延期时间,确定了各排炮孔之间的最佳起爆时间分别为0 ms、40 ms、60 ms、80 ms、100 ms、120 ms。最后,在某高原瓦斯隧道开展了现场试验,爆破效果统计特征表明:当各排炮孔延期时间按照最佳起爆延期设置时,爆后半孔率在90%以上、线性平均超挖在20 cm以内,在保证爆破效果的同时满足施工要求,进一步验证了延期时间设置的合理性,为类似工程爆破提供了参考和借鉴。
关键词(KeyWords): 高瓦斯隧道;延期时间;数值模拟;岩体运移情况;理论模型
基金项目(Foundation): 山东省博士后创新项目(SDCX-ZG-202400203);; 青岛市博士后资助项目(QDBSH20230202074);; 煤矿灾害动力学与控制国家重点实验室开放基金资助项目(2011DA105287-FW202203)~~
作者(Author): 孙永,姬中海,田成林,赵子龙,王杰,李中辉,王子龙
参考文献(References):
- [1]刘小鸣,陈士海.隧道掘进中掏槽孔爆破引起的地表振动波形预测[J].岩土工程学报,2019,41(9):1731-1737.[1]LIU Xiao-ming,CHEN Shi-hai. Prediction of surface vibration waveform caused by cutting hole blasting in tunnel excavation[J]. Journal of Geotechnical Engineering,2019,41(9):1731-1737.(in Chinese)
- [2]王玮,怀平生,降世良.大断面隧道空孔直线掏槽爆破高效掘进方法[J].爆破,2022,39(3):76-81.[2]WANG Wei,HUAI Ping-sheng,JIANG Shi-liang. High efficiency excavation method of large section tunnel empty hole straight cut blasting[J]. Blasting,2022,39(3):76-81.(in Chinese)
- [3]钱至桥,赵明生,池恩安,等.复式楔形掏槽在大断面隧道掘进中的应用研究[J].爆破,2024,41(2):86-95.[3]QIAN Zhi-qiao,ZHAO Ming-sheng,CHI En-an,et al. Research on the application of double wedge cutting in large section tunnel excavation[J]. Blasting,2024,41(2):86-95.(in Chinese)
- [4]李洪伟,黄昕旭,吴立辉,等.电子雷管在岩巷爆破中掏槽孔微差时间试验研究及数值模拟[J].金属矿山,2022(7):64-72.[4]LI Hong-wei,HUANG Xin-xu,WU Li-hui,et al. Experimental study and numerical simulation of millisecond time of electronic detonator in cutting hole of rock roadway blasting[J]. Metal Mine,2022(7):64-72.(in Chinese)
- [5]王贺,田成林,王清标,等.瓦斯隧道爆破方案优化及掌子面处瓦斯运移规律研究[J].爆破,2024,41(4):187-196.[5]WANG He,TIAN Cheng-lin,WANG Qing-biao,et al. Optimization of blasting scheme for gas tunnel and study on gas migration law at tunnel face[J]. Blasting,2024,41(4):187-196.(in Chinese)
- [6]黄道秋.含裂隙围岩瓦斯突出判别方法[J].水利水电技术(中英文),2022,53(S1):267-272.[6]HUANG Dao-qiu. Discrimination method of gas outburst in fractured surrounding rock[J]. Water Conservancy and Hydropower Technology,2022,53(S1):267-272.(in Chinese)
- [7]罗世刚.数码电子雷管在高瓦斯隧道光面爆破中的应用研究[J].四川水力发电,2022,41(6):87-90.[7]LUO Shi-gang. Application of digital electronic detonator in smooth blasting of high gas tunnel[J]. Sichuan Hydroelectric Power,2022,41(6):87-90.(in Chinese)
- [8]吴国宾,陈必港,陈治伙,等.楔形掏槽爆破槽腔内岩块运动规律研究[J].现代隧道技术,2024,61(6):21-28,91.[8]WU Guo-bin,CHEN Bi-gang,CHEN Zhi-huo,et al. Study on the movement law of rock block in the cavity of wedge cut blasting[J]. Modern Tunnel Technology,2024,61(6):21-28,91.(in Chinese)
- [9]胡宇,汪艮忠,周珉,等.隧道掘进楔形掏槽精确延时爆破技术与应用研究[J].地下空间与工程学报,2025,21(3):1050-1056.[9]HU Yu,WANG Gen-zhong,ZHOU Min,et al. Research on precise delay blasting technology and application of wedge cutting in tunnel excavation[J]. Journal of Underground Space and Engineering,2025,21(3):1050-1056.(in Chinese)
- [10]刘浩杉,侯江,张智宇,等.复杂环境下隧道楔形掏槽合理延期时间优化研究[J].中国安全生产科学技术,2023,19(8):116-123.[10]LIU Hao-shan,HOU Jiang,ZHANG Zhi-yu,et al. Study on optimization of reasonable delay time of tunnel wedge cut in complex environment[J]. China Safety Production Science and Technology,2023,19(8):116-123.(in Chinese)
- [11]康宏垚,孔艳婷,胡宇,等.楔形掏槽分段延时爆破技术研究[J].中国矿业,2024,33(S2):330-335.[11]KANG Hong-yao,KONG Yan-ting,HU Yu,et al. Study on wedge-shaped cut sublevel delay blasting technology[J]. China Mining Industry,2024,33(S2):330-335.(in Chinese)
- [12]杨仁树,鲍舟琦,王雁冰,等.数码电子雷管在高瓦斯矿井岩巷爆破掘进中的应用[J].金属矿山,2022(7):27-34.[12]YANG Ren-shu,BAO Zhou-qi,WANG Yan-bing,et al.Application of digital electronic detonator in blasting excavation of rock roadway in high gas mine[J]. Metal Mine,2022(7):27-34.(in Chinese)
- [13]王国豪,王雁冰,谢平,等.基于数码电子雷管的岩巷中深孔-孔内分段爆破破岩机制及应用[J].工程科学学报,2023,45(11):1820-1832.[13]WANG Guo-hao,WANG Yan-bing,XIE Ping,et al. Rock breaking mechanism and application of medium-deep hole-in-hole segmented blasting in rock roadway based on digital electronic detonator[J]. Journal of Engineering Science,2023,45(11):1820-1832.(in Chinese)
- [14]王雁冰,鲍舟琦,谢平,等.基于数码电子雷管的准楔形复式掏槽爆破试验研究[J].金属矿山,2023(3):73-79.[14]WANG Yan-bing,BAO Zhou-qi,XIE Ping,et al. Experimental study on quasi-wedge compound cut blasting based on digital electronic detonator[J]. Metal Mine,2023(3):73-79.(in Chinese)
- [15]周文斌,承财政,杨帆,等.数码电子雷管在露天矿爆破中延期时间优化探讨[J].爆破,2024,41(1):172-177.[15]ZHOU Wen-bin,CHENG Cai-zheng,YANG Fan,et al.Digital electronic detonator in open-pit mine blasting delay time optimization[J]. Blasting,2024,41(1):172-177.(in Chinese)
- [16]ZHANG Xiang,YOU Shuai,YANG Yang,et al. Cut blasting optimization using 3d laser scanning and numerical simulation[J]. Rock Mechanics and Rock Engineering,2024,58(2):1-20.
- [17]LIU Ke-wei,LI Xu-dong,HUANG Lin-qi,et al. Investigation on rock fracturing in presplit blasting under various initial stresses[J]. Rock Mechanics and Rock Engineering,2024,57(9):6927-6950.
- [18]GUO Yan-chao,YANG Ren-shu,PENG Shu-ping,et al.Experimental study on decoupled charge blasting-induced crack propagation with parabolic shaped charge[J]. Engineering Fracture Mechanics, 2024:304110178.
- [19]LING Tian-long,LI Sheng-lin,LIU Dian-shu,et al. Blasting damage of tunnel rock mass based on cumulative effect[J]. Rock Mechanics and Rock Engineering,2022,56(3):1679-1695.
- [20]朱礼臣.隧道掏槽爆破岩块抛掷堆积形态的数值模拟[J].工程爆破,2024,30(3):54-61.[20]ZHU Li-chen. Numerical simulation of rock throwing accumulation morphology in tunnel cutting blasting[J].Engineering Blasting,2024,30(3):54-61.(in Chinese)
- [21]HANG Xiang-yu,YAN Peng,HE Hua-xiong,et al. Experimental investigations of the effect of millisecond-delay time on the blast vibration reduction with electronic detonators[J]. Journal of Vibration and Control,2023,29(17-18):4204-4215.
- [22]DONG Hong-jie,GUO Yang,YANG Zhi-ming,et al. The local Well-Posedness of the relativistic Vlasov-MaxwellLandau system with the specular reflection boundary condition[J]. SIAM Journal on Mathematical Analysis,2024,56(5):6613-6688.
- [23]张鑫,刘泽功,常帅,等.爆破荷载作用下煤岩本构模型参数特性研究[J].振动与冲击,2025,44(5):263-277.[23]ZHANG Xin,LIU Ze-gong,CHANG Shuai,et al. Study on the parameter characteristics of the constitutive model of coal and rock under blasting load[J]. Vibration and Impact,2025,44(5):263-277.(in Chinese)
- [24]LIN Ming-hua,LIN Bai-quan,YANG Wei,et al. Study on influence of preset circular holes on propagation of blast-induced cracks based on experiments and discrete element simulations[J]. Rock Mechanics and Rock Engineering,2024,57(11):9597-9616.
- [25]朱宝合,郑邦友,戴亦军.复杂条件下隧道揭煤前段爆破施工工艺[J].煤矿安全,2019,50(11):144-148.[25]ZHU Bao-he,ZHENG Bang-you,DAI Yi-jun. Blasting construction technology in the front section of tunnel uncovering coal under complex conditions[J]. Coal Mine Safety,2019,50(11):144-148.(in Chinese)
- [26]陈一曦,钟明寿,刘影,等.平行掏槽孔内延时爆破技术的SPH-FEM数值模拟[J].工程爆破,2023,29(3):55-62.[26]CHEN Yi-xi,ZHONG Ming-shou,LIU Ying,et al. SPHFEM numerical simulation of delayed blasting technology in parallel cut holes[J]. Engineering Blasting,2023,29(3):55-62.(in Chinese)
- [27]MA Long-hao,LIN Fei,DU Yan-qiang,et al. Blasting profile evaluation of sand-mud interbedded surrounding rock during the large-span tunnel construction[J]. Scientific Reports,2024,14(1):12405-12405.
- [28]WANG An-tong,TAO Tie-jun,TIAN Xing-chao,et al. Analysis of the influence of shear-tensile resistance and rock-breaking effect of cutting holes[J]. Scientific Reports,2024,14(1):4917-4917.
- [29]李玉华,高亚伟,钟秋锋,等.不同掏槽孔角度下隧道楔形掏槽爆破效果研究[J].现代隧道技术,2025,62(3):108-116.[29]LI Yu-hua,GAO Ya-wei,ZHONG Qiu-feng,et al. Study on wedge cutting blasting effect of tunnel under different cutting hole angles[J]. Modern Tunnel Technology,2025,62(3):108-116.(in Chinese)
- [30]YU Tao,SUN Jun-feng,WANG Jian-feng,et al. Study on the Propagation Law and Waveform Characteristics of a Blasting Shock Wave in a Highway Tunnel with the Bench Method[J]. Buildings,2024,14(9):2802-2802.
- [31]TB 10120—2019铁路瓦斯隧道技术规范[S]. 2019.