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巷道支护质量无线监测系统设计与应用
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作者 秦海涛 《工矿自动化》 北大核心 2015年第7期17-20,共4页
针对传统的巷道锚网和锚杆支护质量有线监测系统存在施工危险、断线频繁、维护困难的问题,设计了一种巷道支护质量无线监测系统,该系统以巷道支护危险区域段面为监测对象,采用ZigBee和WiFi无线数据通信协议解决了主干网络的传输可靠性... 针对传统的巷道锚网和锚杆支护质量有线监测系统存在施工危险、断线频繁、维护困难的问题,设计了一种巷道支护质量无线监测系统,该系统以巷道支护危险区域段面为监测对象,采用ZigBee和WiFi无线数据通信协议解决了主干网络的传输可靠性问题。现场应用结果表明,该系统安装维护简便,优化了巷道支护参数,提高了回采安全性。 展开更多
关键词 锚网 锚杆 巷道支护质量 无线监测 ZIGBEE WiFi
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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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