参考文献/References:
[1] 张富有, 黄守辉, 于野. 公路隧道浅埋、偏压段施工技术应用[J]. 公路, 2018, 63(10): 149-157.
ZHANG Fuyou, HUANG Shouhui, YU Ye. Application of Construction Techniques in Shallow-buried and Biased Sections of Highway Tunnel[J]. Highway, 2018, 63(10): 149-157.
[2] 许王亮. 大断面隧道浅埋偏压洞口段施工关键技术及应用[J]. 工程建设与设计, 2022(21): 159-161.
XU Wangliang. Analysis on Key Construction Technology and Application of Shallow Buried Bias Tunnel Entrance Section of Large Section Tunnel[J]. Construction & Design for Engineering, 2022(21): 159-161.
[3] 张杨, 邵鹏哲, 刘明昌. 某水电站公路隧道浅埋偏压段施工技术研究[J]. 水电站设计, 2022, 38(3): 42-45.
ZHANG Yang, SHAO Pengzhe, LIU Mingchang. Research on Construction Technology of Shallow-buried Biased Section of Highway Tunnel at One Hydropower Station[J]. Design of Hydroelectric Power Station, 2022, 38(3): 42-45.
[4] 张军, 麻建飞, 刘夏冰, 等. 浅埋超大跨隧道洞口段围岩稳定性研究[J]. 高速铁路技术, 2023, 14(6): 7-12, 18.
ZHANG Jun, MA Jianfei, LIU Xiabing, et al. A Study on Rock Stability in Portal Section of Shallow Extra-large-span Tunnel[J]. High Speed Railway Technology, 2023, 14(6): 7-12, 18.
[5] 钟昌桂, 张磊, 周良. 高速铁路隧道洞口危岩落石灾害评价方法及工程对策研究[J]. 高速铁路技术, 2022, 13(6): 84-91.
ZHONG Changgui, ZHANG Lei, ZHOU Liang. A Study on Evaluation Method and Engineering Countermeasures of Dangerous Rockfall Disaster at Tunnel Portal of High-speed Railway[J]. High Speed Railway Technology, 2022, 13(6): 84-91.
[6] 张小林, 应黎, 冯君. 浅层天然气对浅埋隧道安全性的影响研究[J]. 高速铁路技术, 2019, 10(5): 73-76.
ZHANG Xiaolin, YING Li, FENG Jun. Study on Influence of Shallow Natural Gas on Safety of Shallow-buried Tunnels[J]. High Speed Railway Technology, 2019, 10(5): 73-76.
[7] 姜冰, 常树芳, 王方立, 等. 浅埋偏压隧道洞口联合支护变形监测及模拟[J]. 交通科学与工程, 2021, 37(4): 78-84, 107.
JIANG Bing, CHANG Shufang, WANG Fangli, et al. Deformation Monitoring and Numerical Simulation of Combined Support at Portal of Shallow Buried Bias Tunnel[J]. Journal of Transport Science and Engineering, 2021, 37(4): 78-84, 107.
[8] 张惠民. 复杂地质条件下大断面隧道洞口段支护参数研究[J]. 公路, 2020, 65(3): 344-348.
ZHANG Huimin. Study on Support Parameters of Large Section Tunnel Entrance Section under Complex Geological Conditions[J]. Highway, 2020, 65(3): 344-348.
[9] 卢光兆, 周博, 徐锋, 等. 浅埋偏压隧道进洞施工围岩稳定分析[J]. 山东大学学报(工学版), 2021, 51(4): 61-70.
LU Guangzhao, ZHOU Bo, XU Feng, et al. Stability Analysis and Construction Mechanics of Shallow Buried Bias Tunnel Openings[J]. Journal of Shandong University(Engineering Science), 2021, 51(4): 61-70.
[10] 周玉宏, 赵燕明, 程崇国. 偏压连拱隧道施工过程的优化研究[J]. 岩石力学与工程学报, 2002, 21(5): 679-683.
ZHOU Yuhong, ZHAO Yanming, CHENG Chongguo. Optimum Analysis on the Construction Process for Joint Arch Tunnels in Partial Pressure[J]. Chinese Journal of Rock Mechanics and Engineering, 2002, 21(5): 679-683.
[11] 刘小军, 张永兴, 高世军, 等. 软弱围岩隧道洞口段失稳机制分析与处置技术[J]. 岩土力学, 2012, 33(7): 2229-2234.
LIU Xiaojun, ZHANG Yongxing, GAO Shijun, et al. Mechanism Analysis and Treatment Technique of Surrounding Rock Instability for Tunnel Portal Section in Weak Surrounding Rock[J]. Rock and Soil Mechanics, 2012, 33(7): 2229-2234.
[12] 吕兴彬. 锚索框架梁在山区公路高边坡防护中的应用[J]. 交通世界, 2016(10): 94-95.
LV Xingbin. Application of Anchor Cable Frame Beam in High Slope Protection of Mountain Highway[J]. Transport World, 2016(10): 94-95.
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