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首页> 外文期刊>Advances in civil engineering >Evaluating the Impact of Blast-Induced Damage on the Rock Load Supported by Liner in Construction of a Deep Shaft: A Case Study of Ventilation Shaft of Micangshan Road Tunnel Project
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Evaluating the Impact of Blast-Induced Damage on the Rock Load Supported by Liner in Construction of a Deep Shaft: A Case Study of Ventilation Shaft of Micangshan Road Tunnel Project

机译:评价爆炸造成损伤对衬垫施工岩荷载岩荷的影响 - 以云彩山路隧道工程通风轴的案例研究

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The rock load acting on the lining of an underground excavation is influenced by multiple factors, including rock type, rock mass condition, depth, and construction method. This study focuses on quantifying the magnitude and distribution of the radial loads on the lining of a deep shaft constructed in hard rock by the so-called short-step method. The blasting-induced damage zone (BDZ) around the shaft was characterized using ultrasonic testing and incorporated into the convergence-confinement method (CCM) and 3D numerical analyses to assess the impact of BDZ on rock loading against the liner. The results show that excavation blasting of shafts is an important controlling factor for the degradation of the rock mass, while the orientation and magnitude of the principal stress had a minimal influence on the distribution of blast-induced damage. The analysis shows that increasing the depth of blast damage in the walls can increase the loads acting on the lining, and the shear loads acting on the liner could be significant for shafts sunk by the short-step method in an area with anisotropic in situ stresses.
机译:作用于地下挖掘衬砌的岩石负荷受到多种因素的影响,包括岩型,岩石质量,深度和施工方法。本研究侧重于通过所谓的短步方法量化在硬岩中构造的深轴衬里上径向载荷的大小和分布。轴周围的爆破诱导的损伤区(BDZ)的特征在于使用超声波检测,并结合到收敛 - 限制方法(CCM)和3D数值分析中,以评估BDZ对衬里岩石装载的影响。结果表明,轴的挖掘爆破是岩体劣化的重要控制因素,而主应力的取向和幅度对喷射诱导损伤的分布有最小的影响。分析表明,墙壁中的爆破损伤深度可以增加作用在衬里的载荷,并且作用在衬里上的剪切载荷可以通过在具有各向异性的区域中的区域中的短步方法沉入轴沉入的剪切载荷。

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