基于SPH-FEM的高瓦斯隧道掏槽孔延期时间优化OA
Optimization of Delay Time of Cutting Hole in High Gas Tunnel based on SPH-FEM Coupled Simulation
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.
Current initiation delay settings in high-gas tunnels typically follow fixed intervals(0 ms,25 ms,50 ms,75 ms,and 100 ms),yet the limited number of delay segments(fewer than the blast hole rows)forces auxilia-ry holes to share delays.This configuration,combined with inadequate cut-hole delay durations,significantly compro-mises optimal blasting outcomes.To address this issue,a field-programmable digital electronic detonator was imple-mented.Theoretical analysis determined the complete rock mass fracturing duration in the cutting area to be 40 ms,which was further validated through numerical simulation of rock mass displacement dynamics,establishing this as the optimal delay interval.The study reveals that rock mass displacement in the cutting area progresses through three distinct phases:fracture propagation,volumetric expansion,and rock material ejection.Based on the optimal cutting area delay time,the ideal initiation sequence for blast hole rows was established as 0 ms,40 ms,60 ms,80 ms,100 ms,and 120 ms,with subsequent field validation conducted in a high-altitude gas tunnel.Statistical analysis of blasting performance demonstrates that implementing the optimized delay sequence(0 ms,40 ms,60 ms,80 ms,100 ms,and 120 ms)achieves over 90%half-hole preservation and controls linear overbreak within 20 cm,satisfying construction specifications while validating the delay configuration's efficacy,with direct applicability to analogous tunnel blasting operations.
孙永;姬中海;田成林;赵子龙;王杰;李中辉;王子龙
山东科技大学资源学院,泰安 271019山东科技大学资源学院,泰安 271019山东科技大学资源学院,泰安 271019||山东科技大学安全与环境工程学院,青岛 266590山东科技大学资源学院,泰安 271019山东科技大学资源学院,泰安 271019中铁十四局集团第四工程有限公司,济南 250000中铁十四局集团第四工程有限公司,济南 250000
矿业与冶金
高瓦斯隧道延期时间数值模拟岩体运移情况理论模型
high gas tunneldelay timenumerical simulationmigration of rock masstheoretical model
《爆破》 2026 (2)
71-81,129,12
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) Supported by the Shandong postdoctoral innovation project(SDCX-ZG-202400203)Qingdao Postdoctoral Project(QDBSH20230202074)The State Key Laboratory of Coal Mine Disaster Dynamics and Control(No.2011DA105287-FW202203)
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