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复杂地质条件下隧道工程勘察技术研究
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作者 谭子银 谢伟标 《电脑迷》 2023年第8期115-117,共3页
文章围绕“复杂地质条件下隧道工程勘察技术研究”这一选题展开,深入探讨了复杂地质条件对隧道工程勘察的影响和挑战。通过对地质勘探技术、地球物理勘探技术和数值模拟技术在复杂地质条件中的应用进行分析,提出了相应的解决方案和策略... 文章围绕“复杂地质条件下隧道工程勘察技术研究”这一选题展开,深入探讨了复杂地质条件对隧道工程勘察的影响和挑战。通过对地质勘探技术、地球物理勘探技术和数值模拟技术在复杂地质条件中的应用进行分析,提出了相应的解决方案和策略。通过对实际隧道工程勘察案例的分析,总结了复杂地质条件下隧道工程勘察技术的实践经验和教训,为隧道工程勘察提供了有益的参考。 展开更多
关键词 隧道工程勘察 地质勘探技术 地球物理勘探技术 数值模拟技术 隧道工程勘察实例分析
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浅层地震折射波法与高密度电法在隧道工程勘察中的应用 被引量:4
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作者 姜贤斌 都彤宇 《中国水运(下半月)》 2008年第12期209-211,共3页
地球物理勘探是一种高效、经济的勘察手段,本文从浅层地震折射波法和高密度电法二种常用的地球物理勘探方法的工作原理着手,通过实例说明其在隧道工程勘察中,根据具体的现场条件,应选择适合的野外工作方法和室内资料处理方法。同时,说... 地球物理勘探是一种高效、经济的勘察手段,本文从浅层地震折射波法和高密度电法二种常用的地球物理勘探方法的工作原理着手,通过实例说明其在隧道工程勘察中,根据具体的现场条件,应选择适合的野外工作方法和室内资料处理方法。同时,说明了这两种地球物理勘探方法在隧道工程地质勘察中所要解决的问题有所侧重,只有根据其勘探成果,进行联合解释,相互印证,才能有利于提高勘探的解释精度和可靠性,最后提出了这两种物探方法在应用时一些应注意的问题。 展开更多
关键词 浅层地震折射波法 高密度电法 隧道工程勘察 联合解释
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我国交通隧道技术进步及前沿科学问题 被引量:19
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作者 林志 刘旺 +1 位作者 陈川 蒋树屏 《隧道建设(中英文)》 北大核心 2020年第S01期1-8,共8页
为评估《国家中长期科学和技术发展规划纲要(2006—2020年)》实施情况,系统梳理了近14年来我国交通隧道在工程勘察、结构设计、施工技术与装备、通风与照明、运营养护和环保建设等方面取得的主要技术进步与创新。对未来隧道行业的技术... 为评估《国家中长期科学和技术发展规划纲要(2006—2020年)》实施情况,系统梳理了近14年来我国交通隧道在工程勘察、结构设计、施工技术与装备、通风与照明、运营养护和环保建设等方面取得的主要技术进步与创新。对未来隧道行业的技术发展作出展望,提出复杂条件超长隧道、跨海隧道修建技术、城市地下道路网建设与运维技术、隧道绿色可再生能源互补式综合利用技术、隧道病害智能诊断与快速修复技术、超长复杂隧道与地下工程智慧防灾技术等方面面临的新需求和新挑战。 展开更多
关键词 隧道工程勘察 结构设计 施工技术 施工装备 通风照明 运营养护 地下道路网 智慧防灾
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Geotechnical investigations and remediation design for failure of tunnel portal section: a case study in northern Turkey 被引量:7
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作者 Ayberk KAYA Kadir KARAMAN Fikri BULUT 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1140-1160,共21页
Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and ant... Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and anthropogenic impacts are generally reported as the most important triggering factors in the region. Following the portal slope excavations in the entrance section of Cankurtaran tunnel, located in the region, where the highly weathered andesitic tuff crops out, a circular toe failure occurred. The main target of the present study is to investigate the causes and occurrence mechanism of this failure and to determine the feasible remedial measures against it using finite element method(FEM) in four stages. These stages are slope stability analyses for pre-and postexcavation cases, and remediation design assessments for slope and tunnel. The results of the FEM-SSR analyses indicated that the insufficient initial support design and weathering of the andesitic tuffs are the main factors that caused the portal failure. After installing a rock retaining wall with jet grout columns and reinforced slope benching applications, the factor of safety increased from 0.83 to 2.80. In addition toslope stability evaluation, the Rock Mass Rating(RMR), Rock Mass Quality(Q) and New Austrian Tunneling Method(NATM) systems were also utilized as empirical methods to characterize the tunnel ground and to determine the tunnel support design. The performance of the suggested empirical support design, induced stress distributions and deformations were analyzed by means of numerical modelling. Finally, it was concluded that the recommended stabilization technique was essential for the dynamic long-term stability and prevents the effects of failure. Additionally, the FEM method gives useful and reasonably reliable results in evaluating the stability of cut slopes and tunnels excavated both in continuous and discontinuous rock masses. 展开更多
关键词 Portal failure Stability analysis Finite element method Tunnel support design Remedial measures Rock Mass Rating(RMR) Rock Mass Quality(Q) New Austrian Tunneling Method(NATM)
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