Fine controlled blasting of subsurface excavation for subway stations in soft–hard mixed-medium rock mass

IF 7.4 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Tunnelling and Underground Space Technology Pub Date : 2025-04-01 Epub Date: 2025-01-20 DOI:10.1016/j.tust.2025.106407
Wanzhi Zhang , Jie Mei , Keguo Sun , Bangshu Xu
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Abstract

Drilling and blasting excavation methods along with primary arch-cover primary supports are frequently employed in the construction of urban subway stations. However, traditional blasting methods fail to control tunnel face flatness, overbreak, and underbreak in soft–hard mixed-medium rock mass owing to symmetric and invariable blasting parameters. The Shishan Road Station of Qingdao Metro Line 6 is located in a soft–hard mixed-medium rock mass. Traditional blasting excavation methods result in considerable over-excavation of the soft rock on the one side, forming a concave inside, and minor over- and under-excavation of the hard rock on the opposite side, forming a convex outside. Herein, numerical models were developed to analyze the rock damage caused by contour blasting in soft–hard mixed-medium rock mass. Different perimeter hole spacings, burden thicknesses, and charge weights were investigated to identify the optimal parameters. Based on these models, this study proposes an asymmetric blasthole pattern and charge parameters, such as a smaller spacing and charge weight on the soft rock side and deeper hole lengths on the hard rock side. In addition, higher delay times were suggested to control the blasting vibration. Field tests showed that the optimized blasting scheme effectively controlled the flatness, overbreak, and underbreak. The utilization rate of blast holes increased by 5%, the average overbreak area decreased by 57.3%, and underbreak did not occur. The blasting energy of a single initiation and the proportion of low-frequency energy decreased significantly, resulting in better control of rock damage caused by blasting vibrations.
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软-硬-中混合岩体中地铁车站地下开挖精细控制爆破
在城市地铁车站施工中,常采用钻孔爆破开挖法和主拱盖主支护法。然而,在软硬混合介质岩体中,传统的爆破方法由于爆破参数的对称性和不变性,无法控制巷道面的平整度、过断和下破。青岛地铁6号线石山路站位于软硬混合中岩体中。传统的爆破开挖方法会导致一侧软岩过度开挖,内部形成凹形,另一侧硬岩过度和欠开挖较小,外部形成凸形。在此基础上,建立了分析软硬混合介质岩体中轮廓爆破岩石损伤的数值模型。研究了不同的周长孔间距、炉料厚度和装药重量,以确定最佳参数。在此基础上,本文提出了软岩侧较小的间距和装药重量,硬岩侧较深的孔长等非对称炮眼模式和装药参数。此外,建议采用较高的延迟时间来控制爆破振动。现场试验表明,优化后的爆破方案有效地控制了平整度、过断和欠断。爆破孔利用率提高了5%,平均超冲面积减少了57.3%,未发生底冲。单次起爆的爆破能量和低频能量所占比例显著降低,爆破振动对岩石损伤的控制效果较好。
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来源期刊
Tunnelling and Underground Space Technology
Tunnelling and Underground Space Technology 工程技术-工程:土木
CiteScore
11.90
自引率
18.80%
发文量
454
审稿时长
10.8 months
期刊介绍: Tunnelling and Underground Space Technology is an international journal which publishes authoritative articles encompassing the development of innovative uses of underground space and the results of high quality research into improved, more cost-effective techniques for the planning, geo-investigation, design, construction, operation and maintenance of underground and earth-sheltered structures. The journal provides an effective vehicle for the improved worldwide exchange of information on developments in underground technology - and the experience gained from its use - and is strongly committed to publishing papers on the interdisciplinary aspects of creating, planning, and regulating underground space.
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