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隧道建设(中英文) ›› 2017, Vol. 37 ›› Issue (5): 565-570.DOI: 10.3973/j.issn.1672-741X.2017.05.007

• 研究与探索 • 上一篇    下一篇

基于三维重构的隧道围岩稳定性快速分析及动态反馈

彭蓉蓉   

  1. (江西省高速公路联网管理中心, 江西南昌 330036)
  • 收稿日期:2016-07-27 修回日期:2016-10-11 出版日期:2017-05-25 发布日期:2017-06-08
  • 作者简介:彭蓉蓉(1981—),女,江西南昌人,2007 年毕业于上海财经大学,工程经济专业,本科,工程师,现从事高速公路桥隧工程建设管理工作。Email: Queenie13@126.com。
  • 基金资助:

    江西省交通运输厅科技项目(2011C0061)

Fast Analysis and Dynamic Feedback of Tunnel Surrounding Rock Stability Based on 3D Reconstruction

PENG Rongrong   

  1. (Jiangxi Expressway Networking Management Center, Nanchang 330036, Jiangxi, China)
  • Received:2016-07-27 Revised:2016-10-11 Online:2017-05-25 Published:2017-06-08

摘要:

节理的存在降低了岩体的完整性和连续性,对隧道围岩的稳定具有重要影响,若支护不及时或强度不够将会严重威胁施工安全。本文依托井冈山特长隧道,提出了基于三维重构、块体理论的隧道围岩稳定性快速分析方法,动态反馈、指导设计施工方案优化。针对中风化砂岩、Ⅳ级围岩区段,通过地质素描与统计分析,建立基于节理特征的三维重构地层模型; 运用块体理论,分析隧道开挖时临空面关键块体分布、失稳形式及安全系数; 提出围岩稳定性动态反馈方法,并对比分析不同支护方案。研究表明: 开挖后围岩稳定性较差,必须采取相应的支护措施,根据动态反馈明确在实际施工时必须严格按照原设计方案施作锚杆支护。基于三维重构的围岩稳定性快速分析及动态反馈,可以实现施工过程中地质数据的动态采集、分析与反馈,及时依据实际开挖地层条件,动态调整支护体系,确保结构的经济安全性。

关键词: 隧道, 节理特征, 三维重构, 围岩稳定性, 快速分析, 动态反馈

Abstract:

The integrity and continuity of rock mass will be reduced and the stability of surrounding rock will be affected due to fissure. The construction safety can not be guaranteed in case of delayed support or inadequate strength. A fast analysis method for the stability of tunnel surrounding rock based on 3D reconstruction and block theory is put forward relying on Jinggangshan Tunnel, so as to realize dynamic feedback and provide guidance for the design and optimization of construction scheme. The 3D reconstruction model based on the feature of fissures in the section with medium weathered sandstone and Grade Ⅳ surrounding rock is established in accordance with the geological sketch and statistical analysis. And then, the key block distribution, instability mode and safety factor in free face are analyzed by block theory. Finally, the dynamic feedback method for surrounding rock stability is proposed, and the different support schemes are comparatively analyzed. The study results show that: 1) The stability of surrounding rock is poor after excavation, and the corresponding supporting measures have to be taken; the anchor bolt support in original design scheme should be strictly carried out in accordance with dynamic feedback. 2) The dynamic acquisition, analysis and feedback of geological data during tunnel construction can be realized by fast analysis and dynamic feedback of surrounding rock stability based on 3D reconstruction; and in view of actual geological data, dynamic adjustment of support system and the economic benefits and safety of tunnel structure can be realized.

Key words: tunnel, characteristics of fissure, 3D reconstruction, stability of surrounding rock, fast analysis, dynamic feedback

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