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| [1] |
ZHANG Ziyang1 WANG Bo1 LIU Jinwei1 NING Qiran1 WANG Jie2 YU Wei1.Study on Application of Multi-level Yielding Support System in a Highway Tunnel in Soft Rock with Large Deformation[J]. MODERN TUNNELLING TECHNOLOGY, 2024,61(3): 108-118 |
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XIAO Mingqing1,2 XU Chen1,2 XIE Biting1,2.Research on the Calculation Method of Tunnel Active Support System Based on the Total Safety Factor Method[J]. MODERN TUNNELLING TECHNOLOGY, 2024,61(2): 43-51 |
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CHEN Zhuoli1,2 ZHU Xunguo1,2 ZHAO Deshen1,2 WANG Yunping1,2.Research on Anchorage Mechanism of Yielding Support in the Deep-buried Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2019,56(4): 16-22 |
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Yao Zhanhu.Construction Risk Assessment for the Shield-Driven Section of the Nanjing Weisan Road River-Crossing Project[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(4): 49-54 |
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Liu Zhanguo1,2,3, Tian Wei1,2,3, Chen Fuqiang1,2,3, Zou Longyan1,2, Zhang Zhaokun1,2.Friction Test for the Incremental Launching Slippage System of a Prefabricated Immersed Tunnel Segement[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 143-147 |
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Wang Daoyuan1,3,4, Wang Xichao2,4, Yuan Jinxiu3, Zhu Zhengguo4.Prediction of the Longitudinal Uplift of an Underwater Shield Tunnel During Canal Excavation[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 110-114 |
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Wang Hui1, Li Tingchun2, Wang Qingbiao1, Zhan Yubao1.Python-Based Secondary Development of ABAQUS and Its Application in Analyzing Shallow-Buried Unsymmetrical Loading Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 160-165 |
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Yuan Yongcai, Li Shucai, Li Liping, Shi Shaoshuai, Zhou Zongqing, Lei Ting.Comprehensive Geological Prediction and a Relevant Treatment Scheme for a Large Karst Cave in Tunnel Construction[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 192-197 |
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Jiang Wei1, Liu Xin2, Liu Xian2, Luo Yao2, Yuan Yong2, Wang Shengnian3, Su Quanke4.Full-Scale Test of the Early Performance of a Factory-Prefabricated Immersed Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 135-142 |
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Yan Tao1,2, Wang Mingnian1, Guo Chun1, Chen Hanbo1, Xie Wenqiang1.Key Techniques for the Diffused Oxygen Supply of an Extra-Long Highway Tunnel in a High-Altitude Area[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 180-185 |
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Lai Jinxing1,5, Qiu Junling1,5, Pan Yunpeng2, Cao Xiaojun3, Liu Chi1,4, Fan Haobo1,5.Comprehensive Monitoring and Analysis of Segment Cracking in Shield Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(2): 186-191 |
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.Design and Construction of the Underpinning of a River-Crossing
Bridge Pile Foundation in a Metro Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2013,50(4): 164-169 |
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Sun Shaofeng1 Yuan Zhu2 Zhao Wanqiang2.Cause Analysis and Treatment Principles for Tunnel Lining Cracking
in Sandy Mudstone with High Geostress[J]. MODERN TUNNELLING TECHNOLOGY, 2013,50(4): 170-175 |
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Wang Xiaomin1,2 Fang Yong2.Construction Ventilation Scheme for the Huayingshan Extra-Long
Tunnel on the Nanchong-Dazhu-Liangping Expressway[J]. MODERN TUNNELLING TECHNOLOGY, 2013,50(4): 188-196 |
| [15] |
Wang Xuewu1 Liu Jing2 Wang Xiaomin2.On the Application of Explosion-Proof Modification Technology
for Construction Machinery and Vehicles for the Gas-Rich Huayingshan
Tunnel on the Nanchong-Dazhu-Liangping Expressway[J]. MODERN TUNNELLING TECHNOLOGY, 2013,50(4): 197-202 |
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