Study on Surrounding Rock Damage in Roadway Smooth Blasting Using S-ALE Algorithm
HUANG Yong-hui;JING Rui;ZHANG Yi-yin;DUAN Qiang-kun;CAO Yong-wei;
Abstract:
Isolated boulders in roadways present substantial safety risks in mining operations. This research investigates the efficacy of blasting techniques for isolated boulder removal and their influence on adjacent rock damage,utilizing smooth blasting principles and the innovative S-ALE computational method. A precisely scaled 3D numerical model was developed based on a roadway project in a Yunnan underground metal mine to comprehensively examine how surrounding rock damage varies with different linear charge densities and borehole spacing configurations during smooth blasting of isolated boulders. The results indicate that:( 1) surrounding rock damage follows an“inverse S-shaped” attenuation pattern with increasing distance from the blast center;( 2) maximum damage depth demonstrates linear growth with higher linear charge density but shows fluctuating behavior with borehole spacing variations,peaking at 0. 36 m and reaching minimum at 0. 40 m spacing;( 3) rock damage exhibits substantially greater sensitivity to linear change density adjustments compared to borehole spacing modifications. The optimal parameters balancing blasting efficiency and explosive consumption are determined to be a linear charge density of 0. 30 kg/m( decoupling coefficient 1. 43) and a borehole spacing of 0. 40 m. The extensive free surface of isolated boulders results in a significantly shallower maximum damage depth than with conventional smooth blasting,consistent with observed reductions in plastic strain both perpendicular to and along the tunnel contour toward the free face. These results offer practical technical references for field applications.
Key Words: linear charge density;blasthole spacing;surrounding rock damage;numerical modeling;S-ALE algorithm
Foundation: 国家自然科学基金(52164009、52574148)~~
Authors: HUANG Yong-hui;JING Rui;ZHANG Yi-yin;DUAN Qiang-kun;CAO Yong-wei;
References:
- [1]宋威.地铁隧道孤石深孔爆破效果评估及孔网参数优化方法[D].北京:北京交通大学,2020.[1]SONG Wei. Evaluation of boulder deep hole blasting effect and optimization method of hole network parameters in metro tunnel[D]. Beijing:Beijing Jiaotong University,2020.(in Chinese)
- [2]衣利伟,黄两宜,曹勇,等.微动探测技术结合深孔爆破在处理盾构孤石中的应用[J].地下空间与工程学报,2021,17(S2):884-891.[2]YI Li-wei,HUANG Liang-yi,CAO Yong,et al. Application of fretting detection technology combined with deep hole blasting in treatment of shield soulder[J]. Chinese Journal of Underground Spaceand Engineering,2021,17(S2):884-891.(in Chinese)
- [3]ZHANG Zhi-qiang,LI Yong-long,WANG Shuo,et al. Assessing and controlling of boulder deep-hole blasting-induced vibrations to minimize impacts to a neighboring metro shaft[J]. Archives of Civil and Mechanical Engineering,2021,21(2):1-20,66.
- [4]MIAO Yu-song,LI Xiao-jie,KONG Liang,et al. Study on the symmetric bilinear initiating technique of deep-hole boulder blasting in the TBM tunnel excavation[J]. Tunnelling and Underground Space Technology,2021,111(5):103871.
- [5]孙非凡.盾构施工隧道孤石爆破法处理研究[D].西安:西安理工大学,2023.[5]SUN Fei-fan. Research on boulder blasting treatment of shield tunnel[D]. Xi'an:Xi'an University of Technology,2023.(in Chinese)
- [6]申涛,罗宁,戚福州,等.切缝药包岩石巷道光面爆破数值模拟与优化研究[J].采矿与安全工程学报,2020,37(4):674-680.[6]SHEN Tao,LUO Ning,QI Fu-zhou,et al. Numerical simulation and optimization of smooth blasting in rock roadway with split-tube charge holder[J]. Journal of Mining&Safety Engineering,2020,37(4):674-680.(in Chinese)
- [7]邓永兴,张中雷,管志强,等.螺旋管聚能药包根底光面爆破机理研究及应用[J].爆炸与冲击,2020,40(1):92-99.[7]DENG Yong-xing,ZHANG Zhong-lei,GUAN Zhi-qiang,et al. Research and application of root smooth blasting mechanismof shaped charge in spiral tube[J]. Explosion and Shock Waves,2020,40(1):92-99.(in Chinese)
- [8]付玉华,李夕兵,董陇军.损伤条件下深部岩体巷道光面爆破参数研究[J].岩土力学,2010,31(5):1420-1426.[8]FU Yu-hua,LI Xi-bing,DONG Long-jun. Analysis of smooth blasting parameters for tunnels in deep damaged rock mass[J]. Rock and Soil Mechanics,2010,31(5):1420-1426.(in Chinese)
- [9]YANG Ren-shu,FANG Shi-zheng,YANG Ai-yun,et al. In situ stress effects on smooth blasting:model test and analysis[J]. Shock and Vibration,2020,2020:1-14.
- [10]范勇,孙金山,贾永胜,等.高地应力硐室光面爆破孔间应力相互作用与成缝机制[J].岩石力学与工程学报,2023,42(6):1352-1365.[10]FAN Yong,SUN Jin-shan,JIA Yong-sheng,et al. Stress interaction and crack penetration mechanism between smooth blasting holes for tunnel excavation under high in-situ stress[J]. Chinese Journal of Rock Mechanics and Engineering,2023,42(6):1352-1365.(in Chinese)
- [11]高启栋,卢文波,杨招伟,等.水平光面爆破激发地震波的成分及衰减特征[J].爆炸与冲击,2019,39(8):170-182.[11]GAO Qi-dong,LU Wen-bo,YANG Zhao-wei,et al. Components and attenuation of seismic waves induced by horizontal smooth blasting[J]. Explosion and Shock Waves,2019,39(8):170-182.(in Chinese)
- [12]夏文俊,卢文波,陈明,等.白鹤滩坝址柱状节理玄武岩爆破损伤质点峰值振速安全阈值研究[J].岩石力学与工程学报,2019,38(S1):2997-3007.[12]XIA Wen-jun,LU Wen-bo,CHEN Ming,et al. Study on safety threshold of peak particle velocity about blasting damage of columnar jointed basalt rock mass in Baihetan dam site[J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(S1):2997-3007.(in Chinese)
- [13]满轲,刘晓丽.周边空孔效应对爆破振速及围岩损伤的影响研究[J].工程力学,2020,37(11):127-134,184.[13]MAN Ke,LIU Xiao-li. The effect of surrounding empty holes on the blasting velocity and damaged zones[J].Engineering Mechanics,2020,37(11):127-134,184.(in Chinese)
- [14]FENG Xiao-mei,ZHUANG Jin-zhao,JU Jin-san,JU J,et al. Smooth blasting hole spacing and smooth surface layer depth optimization[J]. Advanced Science Letters,2011,4(8-10):2703-2707.
- [15]罗志光,张长亮,陈力华,等.公路隧道不耦合装药光面爆破现场试验[J].地下空间与工程学报,2017,13(S2):578-584.[15]LUO Zhi-guang,ZHANG Chang-liang,CHEN Li-hua,et al. Field trial of uncoupled charge smooth blasting for highway tunnel[J]. Chinese Journal of Underground Space and Engineering,2017,13(S2):578-584.(in Chinese)
- [16]LI Xin-ping,LV Jun-lin,HUANG Jun-hong,et al. Numerical simulation research of smooth wall blasting using the timing sequence control method under different primary blast hole shapes[J]. Shock and Vibration,2019,2019:1-16.
- [17]WANG J,CAO A,LIU J,et al. Numerical simulation of rock mass structure effect on tunnel smooth blasting quality:A Case Study[J]. Applied Sciences,2021,11(22):10761-10761.
- [18]陈玉,黄国栋,马龙浩,等.砂岩隧道全断面光面爆破一次成形技术研究[J].地下空间与工程学报,2021,17(S1):283-290.[18]CHEN Yu,HUANG Guo-dong,MA Long-hao,et al.Study on one-time forming technology of full-face smooth blasting in sandstone tunnel[J]. Chinese Journal of Underground Space and Engineering,2021,17(S1):283-290.(in Chinese)
- [19]唐红梅,周云涛,廖云平.地下工程施工爆破围岩损伤分区研究[J].振动与冲击,2015,34(23):202-206.[19]TANG Hong-mei,ZHOU Yun-tao,LIAO Yun-ping. Damage zone of surrounding rock of underground engineering under construction blasting[J]. Journal of Vibration and Shock,2015,34(23):202-206.(in Chinese)
- [20]褚怀保,杨小林,梁为民,等.煤体爆破损伤断裂过程与机理研究[J].采矿与安全工程学报,2018,35(2):410-414.[20]CHU Huai-bao,YANG Xiao-lin,LIANG Wei-min,et al.Study on the damage-fracture process and mechanism of coal blasting[J]. Journal of Mining and Safety Engineering,2018,35(2):410-414.(in Chinese)
- [21]许梦飞,姜谙男,蒋腾飞,等.考虑循环爆破效应的Hoek-Brown弹塑性损伤模型及其工程应用[J].岩石力学与工程学报,2020,39(S1):2683-2692.[21]XU Meng-fei,JIANG An-nan,JIANG Teng-fei,et al. A cumulative blasting damage model of rock based on Hoek-Brown criterion and its engineering application[J]. Chinese Journal of Rock Mechanics and Engineering,2020,39(S1):2683-2692.(in Chinese)
- [22]TIAN Xing-chao,TAO Tie-jun,LIU Xia,et al. Calculation of hole spacing and surrounding rock damage analysis under the action of in situ stress and joints[J]. Scientific Reports,2022,12(1):22331-22331.
- [23]陈大勇,黄炳香,吴占伟,等.煤矿顶板超深孔爆破对巷道围岩稳定性影响研究[J].采矿与安全工程学报,2022,39(6):1135-1142.[23]CHEN Da-yong,HUANG Bing-xiang,WU Zhan-wei,et al. Study on influence of ultra-deep hole roof blasting on stability of surrounding rock of roadway[J]. Journal of Mining&Safety Engineering,2022,39(6):1135-1142.(in Chinese)
- [24]马泗洲,刘科伟,杨家彩,等.初始应力下岩体爆破损伤特性及破裂机理[J].爆炸与冲击,2023,43(10):152-173[24]MA Si-zhou,LIU Ke-wei,YANG Jia-cai,et al. Blast-induced damage characteristics and fracture mechanism of rock mass under initial stress[J]. Explosion and Shock Waves,2023,43(10):152-173.(in Chinese)
- [25]黄永辉,孙博,张智宇,等.岩石RHT本构的爆破碎裂判定方法优化及验证[J].北京理工大学学报,2023,43(6):565-574.[25]HUANG Yong-hui,SUN Bo,ZHANG Zhi-yu,et al. Optimization and verificaton of blasting fragmentation judgment method for RHT constitutive model of rock[J].Transactions of Beijing Institute of Technology,2023,43(6):565-574.(in Chinese)
- [26]辛春亮,涂建,王俊林,等.由浅入深精通LS-DYNA[M].北京:中国水利水电出版社,2019.[26]XIN Chun-liang,TU Jian,WANG Jun-lin,et al. Mastering LS-DYNA:from fundamentals to advanced applications[M]. Beijing:China Water and Power Press,2019.(in Chinese)
- [27]秦庆词,李克钢,李明亮,等.非均质性岩石材料损伤失效准则及其失效行为研究[J].岩石力学与工程学报,2021,40(9):1812-1825.[27]QIN Qing-ci,LI Ke-gang,LI Ming-liang,et al. Study on damage failure criterion and failure behavior of non-homogeneous rock materials[J]. Chinese Journal of Rock Mechanics and Engineering,2021,40(9):1812-1825.(in Chinese)
- [28]何元斌,杜永林,罗倩蓉.工程经济学[M]. 2版.成都:西南交通大学出版社,2021.[28]HE Yuan-bin,DU Yong-lin,LUO Qian-rong. Engineering economics[M]. 2nd edition. Chengdu:Southwest Jiaotong University press,2021.(in Chinese)
- [29]梁东彪.周边孔爆破参数对隧道围岩损伤及超欠挖的影响研究[D].成都:西南交通大学,2019.[29]LIANG Dong-biao. Study on the influence of peripheral hole blasting parameters on tunnel surrounding rock damage and overbreak[D]. Chengdu:Southwest Jiaotong University,2019.(in chinese)
- [30]王雁冰,李书萱,耿延杰,等.切缝药包爆破定向断裂机理及围岩损伤特性分析[J].工程科学学报,2023,45(4):521-532.[30]WANG Yan-bing,LI Shu-xuan,GENG Yan-jie,et al. Directional fracture mechanism and surrounding rock damage characteristics of slotted cartridge blasting[J]. Chinese Journal of Engineering,2023,45(4):521-532.(in Chinese)
- HUANG Yong-hui
- JING Rui
- ZHANG Yi-yin
- DUAN Qiang-kun
- CAO Yong-wei
- School of Electric Power Engineering
- Kunming University of Technology
- Sichuan Emergency Rescue Department
- HUANG Yong-hui
- JING Rui
- ZHANG Yi-yin
- DUAN Qiang-kun
- CAO Yong-wei
- School of Electric Power Engineering
- Kunming University of Technology
- Sichuan Emergency Rescue Department