首页> 外文会议>International Symposium on Structural Engineering >RESEARCH AND ANALYSIS ON STABILITY OF BOLT REINFORCED TUNNEL IN ANISOTROPIC LAYERED ROCK MASS WITH LOW INCLINATION ANGLE STRATIFICATION
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RESEARCH AND ANALYSIS ON STABILITY OF BOLT REINFORCED TUNNEL IN ANISOTROPIC LAYERED ROCK MASS WITH LOW INCLINATION ANGLE STRATIFICATION

机译:低倾角分层的各向异性层状岩体锚杆支护隧道稳定性研究与分析

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摘要

Wide contribution of layered rock mass cannot be avoided in underground construction.Based on the Gonghe tunnel in Yuxiang Highway,the monitoring to the surrounding rock and systemic bolts reveals that the tunnel lies in rock mass with bias pressure.In order to probe into the failure form and the reinforcing way,a physical model for layered rock mass with low inclination angle 22.5° is made adopting elasto-brittle simulated material which is developed independently.Loading through the large scale real triaxial geotechnical engineering testing machine,the configuration trait of secondary stress and failure mechanism of layered rock mass tunnel are presented.Various bolt reinforcing effects present in various place via the strain in surrounding rock,inner video,failure configuration around the tunnel and developed FLAC program,especially based on the strain configuration along the full length of bolt in the model.The test provides a quantitative evaluating index for safety storage with overload coefficient.The failure propagation in the test is consistent with the practical tunnel and the monitor of bolts which validates the anisotropic rock mass model and provides a foundation for the research on reinforcing mechanism and reinforcing design of tunnels in layered anisotropy rock mass.
机译:在地下施工中不可避免地会产生层状岩体的广泛影响。以玉象公路共和隧道为例,对围岩和系统锚杆的监测表明,该隧道处在偏压力下的岩体中。形式和加固方式,采用独立开发的弹塑性脆性模拟材料,制作了低倾角22.5°的层状岩体物理模型。通过大型真实的三轴岩土工程试验机加载,二次应力的构型特征通过围岩的应变,内部视频,隧道周围的破坏形态以及开发的FLAC程序,特别是基于沿整个岩层的应变形态,在不同的地方在各个地方都表现出各种锚杆加固效果。该模型提供了用于安全存储的定量评估指标试验中的破坏传播与实际隧道和锚杆的监测相吻合,验证了各向异性岩体模型,为研究层状各向异性岩体中的隧道加固机理和加固设计提供了基础。

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