期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
In Situ Experiments on Supporting Load Effect of Large-span Deep Tunnels in Hard Rock 被引量:4
1
作者 HE Ben-guo ZHU Yong-quan +2 位作者 SUN Ming-lei LIU Hong-yan ZHANG Zhi-qiang 《Journal of Mountain Science》 SCIE CSCD 2013年第6期1125-1136,共12页
A section of the Nanliang high speed railway tunnel on Shijiazhuang-Taiyuan high-speed passenger railway line in China was instrumented and studied for its mechanical properties and performances. The cross section for... A section of the Nanliang high speed railway tunnel on Shijiazhuang-Taiyuan high-speed passenger railway line in China was instrumented and studied for its mechanical properties and performances. The cross section for the tunnel was300 m2and is classified as the largest cross section for railway tunnels in China. Through in situ experimental studies, mechanistic properties of the tunnel were identified, including the surrounding rock pressure, convergences along tunnel perimeter and safety of primary support and lining structure.Based on the field measured data, the surrounding rock pressure demand for large-span deep tunnel in hard rock is recommended as double peak type in the vertical direction and fold line type was recommended for horizontal pressure. The results suggested that Promojiyfakonov's theory was most close to the monitored value. Specific recommendations were also generated for the use of bolts in tunnel structures.Numerical simulation was used to evaluate the safety of the tunnel and it confirmed that the current design can satisfy the requirement of the current code. 展开更多
关键词 Large-span tunnel Railway tunnel Surrounding rock pressure Load distribution In situ experiment
下载PDF
双模盾构穿越大埋深软岩施工卡机风险分析及研究 被引量:13
2
作者 孙峰梅 《铁道建筑技术》 2019年第5期98-102,145,共6页
盾构/TBM在大埋深软弱地层掘进时,围岩收敛变形较大,盾构支护体系施作及时,容易挤压盾壳并导致盾构/TBM卡机,影响隧道的正常掘进施工。本文针对广佛环线东环隧道,利用数值方法分析了大埋深双模式盾构隧道有无支护条件下围岩的变形特征... 盾构/TBM在大埋深软弱地层掘进时,围岩收敛变形较大,盾构支护体系施作及时,容易挤压盾壳并导致盾构/TBM卡机,影响隧道的正常掘进施工。本文针对广佛环线东环隧道,利用数值方法分析了大埋深双模式盾构隧道有无支护条件下围岩的变形特征和围岩与盾壳的相互作用关系,探讨了大埋深软岩区段双模式盾构隧道卡机风险的控制和处理措施。研究结果表明,大埋深盾构隧道穿越软弱地层开挖时,支护越及时,围岩对盾壳挤压作用就越大,就越容易出现卡机情况;埋深越大,盾构开挖对围岩的扰动作用就越大,作用在盾壳上的法向应力也越大,导致摩擦力增大,卡机事故发生的概率大幅增加;针对大埋深双模式盾构施工的卡机风险,可以从超前支护、选择合适盾构机型、围岩扩挖三个方面进行控制和处理。 展开更多
关键词 大深埋隧道 盾构/TBM 挤压大变形 卡机 数值分析 控制及处理
下载PDF
大埋深岩层双模盾构施工力学响应分析 被引量:3
3
作者 王永文 《铁道建筑技术》 2019年第5期22-26,共5页
针对深部岩体工程中高地应力场对隧道施工的彩响,以广佛环线东环隧道工程为背景,利用FLAC^3D有限差分软件建立盾构隧道施工精细化模型,分析了大埋深条件下盾构隧道施工围岩扰动特征和管片衬砌力学行为。研究结果表明,盾构隧道开挖对围... 针对深部岩体工程中高地应力场对隧道施工的彩响,以广佛环线东环隧道工程为背景,利用FLAC^3D有限差分软件建立盾构隧道施工精细化模型,分析了大埋深条件下盾构隧道施工围岩扰动特征和管片衬砌力学行为。研究结果表明,盾构隧道开挖对围岩的扰动集中在一定范围内,且在不同目标断面围岩受扰动程度相近;在深埋盾构隧道中,管片衬砌受力沿纵向方向减小,其中拱顶部分受力最大,拱底部分受力最小;管片衬砌位移随着围岩的稳定而逐渐收敛,沿开挖方向其变形有所差异。 展开更多
关键词 大深埋隧道 双模盾构 围岩压力 管片变形 数值分析
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部