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软弱岩体中浅埋超大跨度隧道锚杆的力学行为

Mechanical Behavior of Anchor Bolts for Shallow Super-Large-Span Tunnels in Weak Rock Mass.

作者信息

He Shaohui, He Jiaxin, Ma Jianfei, Liu Xiabing, Li Yiming, Zhang Bin

机构信息

School of Civil Engineering, Beijing Jiaotong University, Haidian District, Beijing 100044, China.

Guangdong Hua-Lu Transport Technology Co., Ltd., Guangzhou 510420, China.

出版信息

Materials (Basel). 2023 Aug 27;16(17):5862. doi: 10.3390/ma16175862.

Abstract

Based on the Xiabeishan No.2 tunnel project of the Hang-Shao-Tai high-speed railway in China, the mechanical behavior of the anchor bolts for shallow super-large-span (SSLS) tunnels in weak rock mass is comprehensively investigated through laboratory tests, numerical simulation, and field tests. Firstly, an eight-month field test is conducted in the Xiabeishan No.2 tunnel, and it is discovered that the blasting vibration created by the construction of the middle pilot tunnel caused serious damage to the temporary support, seriously affecting the development of the bolt axial force and causing great construction risks. Then, the refined finite difference model of the SSLS tunnels is formulated, and a series of field and laboratory tests are conducted to acquire the calculation parameters. By comparing the monitored and simulated bolt axial force, the reliability of the numerical model is verified. Subsequently, the influence of the rock condition, construction scheme and bolt length on the mechanical behavior of anchor bolts is discussed. It is revealed that the rock grade significantly affects the bearing characteristics of anchor bolts. The construction scheme can greatly affect the magnitude and development mode of the bolt axial force, but the final distribution characteristics of the bolt axial force do not change regardless of the construction sequence. The axial force of the anchor bolts grows rapidly with the bolt length when the bolt length is within 18 m; meanwhile, when the bolt length exceeds 18 m, increasing the bolt length has a limited effect on the improvement in the bolt support performance. Finally, some optimization measures are proposed according to the monitoring data and simulation results.

摘要

依托中国杭绍台高速铁路下北山二号隧道工程,通过室内试验、数值模拟和现场试验,对软弱岩体浅埋超大跨隧道锚杆的力学特性进行了全面研究。首先,在下北山二号隧道开展了为期8个月的现场试验,发现中导洞施工产生的爆破振动对临时支护造成严重破坏,严重影响锚杆轴力的发展,带来极大施工风险。接着,建立了浅埋超大跨隧道精细有限差分模型,并开展了一系列现场和室内试验获取计算参数。通过对比监测和模拟的锚杆轴力,验证了数值模型的可靠性。随后,探讨了岩石条件条件条件、施工方案和锚杆长度对锚杆力学特性的影响。结果表明,岩石等级对锚杆承载特性有显著影响。施工方案对锚杆轴力大小及发展方式影响较大,但锚杆轴力最终分布特征不受施工顺序影响。当锚杆长度在18m以内时,锚杆轴力随锚杆长度快速增长;同时,当锚杆长度超过18m时,增加锚杆长度对提升锚杆支护性能的作用有限。最后,根据监测数据和模拟结果提出了一些优化措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a60/10488759/bfdac37d38a8/materials-16-05862-g001.jpg

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