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隧道建设(中英文) ›› 2010, Vol. 30 ›› Issue (S1): 161-165.

• 研究与探索 • 上一篇    下一篇

全粘结型锚杆加固隧道掌子面强化机理研究

张军伟1,2,梅志荣2   

  1. 1. 中国铁道科学研究院, 北京100081;2. 中铁西南科学研究院, 成都610031
  • 收稿日期:2010-03-29 修回日期:2010-06-08 出版日期:2010-08-14 发布日期:2010-08-25
  • 作者简介:张军伟(1980—),男,河南漯河人,2007毕业于中科院研究生院岩土工程专业,工程师,现主要从事隧道与地下工程方面的研究工作。

Study on Strengthening Mechanisms of Tunnel Face
Reinforced by Bondingtype Glass Fiber Bolts

 ZHANG  Jun-Wei1,2, MEI  Zhi-Rong2   

  1. 1. China Academy of Railway Science, Beijing 100081;
    2. China Railway Southwest Research Institute, Chengdu 610031
  • Received:2010-03-29 Revised:2010-06-08 Online:2010-08-14 Published:2010-08-25

摘要:

针对目前我国城市隧道和客运隧道建设遭遇软弱围岩时塌方事故频繁发生的状况,对全粘结型锚杆插入掌子面前方待挖核心土体注浆后可以有效地提高加固体的黏聚力C、内摩擦角以及弹性模量E,提高掌子面前方待挖核心土体的整体强度和刚度、抑制地表沉陷,提高掌子面的稳定性的特性进行研究,分析全粘结型锚杆加固掌子面的强化机理,旨在获取全粘结型玻璃纤维锚杆加固掌子面提高待挖核心土体黏聚力C、内摩擦角以及弹性模量E的幅度,避免隧道频繁发生塌方事故。通过在浏阳河隧道的现场试验应用表明:全粘结型锚杆能够有效地提高掌子面前方待挖核心土体的整体强度,保证隧道施工过程掌子面及其周围围岩的稳定性。

关键词: 浏阳河隧道, 全粘结型锚杆, 预加固, 掌子面, 待挖核心土体, 围岩稳定性

Abstract:

Collapses occur frequently when soft ground is tunneled through. Bondingtype glass fiber bolts are installed into the advance core soil of tunnels and grouting is executed, which can effectively improve the cohesion C, internal friction angle   and elastic modulus E of the advance core soil, in turn improves the strength and stiffness of the advance core soil, restrict the ground surface settlement and enhance the tunnel face stability. The strengthening mechanisms of tunnel face reinforced by bondingtype glass fiber bolts are studied to obtain the improving magnitude of cohesion C, internal friction angle  and elastic modulus E of the advance core soil so as to avoid tunnel collapses. The technology is trialed in Liuyanghe tunnel, which demonstrates that bondingtype glass fiber bolts can effectively improve the strength of the advance core soil and can guarantee the stability of the tunnel face and the surrounding rock mass during tunnel construction.

Key words: iuyanghe tunnel, bondingtype bolt, preconsolidation, face, advance core soil, rock mass stability