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Stability Analysis of Surrounding Rock and Treatment Structures in Superlarge Karst Cave of Naqiu Tunnel

机译:那丘隧道超大型岩溶洞穴围岩稳定性分析及处理结构。

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摘要

This study relied on the treatment and construction process of the corridor hall-type large karst cave of Naqiu Tunnel, and field tests and numerical simulation were carried out to investigate the stability of surrounding rock and treatment structures during the tunnel excavation process. From the results of different excavation footages, both the displacement characteristics between the backfill pile-bearing platform-retaining wall compound treatment structures with surrounding rock and the stress changes of the initial support were analyzed. Combining with the field tests and simulation results, it can be obtained that the compound treatment structure under the bias voltage has unequal leftward displacement and settlement. When the distance to excavation surface gets closer, the bias effect will become greater on the horizontal displacement than on the vertical displacement. Both the displacement and stress changes tend to be stable after the excavation is completed, which proves that the treatment structure of the foundation, bearing platform, retaining wall, and lining structure on the steep slope section is stable and effectively suppresses the effect of the surrounding rock bias voltage. All above conclusions can provide theoretical basis and construction reference for similar projects.
机译:依托纳丘隧道走廊厅式大型岩溶洞穴的处理和施工过程,进行了现场试验和数值模拟,研究了隧道开挖过程中围岩和处理结构的稳定性。根据不同开挖镜头的结果,分析了回填桩承台挡土墙复合处理结构与围岩之间的位移特征以及初始支护的应力变化。结合现场测试和仿真结果,可以得出偏压下的复合处理结构的左移和沉降不均等。当距开挖面的距离越来越近时,水平位移的偏斜效应会大于垂直位移的偏斜效应。开挖完成后位移和应力变化趋于稳定,证明陡坡段基础,承台,挡土墙和衬砌结构的处理结构稳定,有效抑制了围岩的影响。岩石偏置电压。以上结论可为类似工程提供理论依据和施工参考。

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  • 来源
    《Advances in civil engineering》 |2018年第6期|4842308.1-4842308.14|共14页
  • 作者

    Chen HuaWei; Sha Ce;

  • 作者单位

    Hunan Prov Commun Planning Survey & Design Inst, Changsha, Hunan, Peoples R China;

    Zhejiang Inst Secur Technol, Wenzhou 325016, Zhejiang, Peoples R China;

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  • 正文语种 eng
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