Home | About Journal  | Editorial Board  | Instruction | Subscription | Advertisement | Message Board  | Contact Us | 中文
MODERN TUNNELLING TECHNOLOGY 2011, Vol. 48 Issue (3) :22-27    DOI:
Current Issue | Next Issue | Archive | Adv Search << [an error occurred while processing this directive] | [an error occurred while processing this directive] >>
Pre-cutting Method and its Key Techniques in Application
(1 College of Civil Engineering, Beijing Jiaotong University,Beijing   100044;
2 Beijing Municipal Research Institute,Beijing 100037)
Download: PDF (0KB)   HTML (1KB)   Export: BibTeX or EndNote (RIS)      Supporting Info
Abstract With the development of tunnel construction, the problems of complex geology, complex environments and lack of labour force are gradually becoming stricking. Pre-cutting is a unique technology which lies between mining bored shallow tunneling and shield tunneling. It can be developed to be a new construction technique combined with shallow mining bored tunneling to deal with complex geology and environments so as to significantly improve the mechanization level of tunnel construction and control subsidence more effectively. The composition of machines, principles to control deformation and key points in application are addressed in the paper.
Service
Email this article
Add to my bookshelf
Add to citation manager
Email Alert
RSS
Articles by authors
WANG Xiu-Ying-1
Liu-Wei-Ning-1
Zhao-Bo-Ming-1
He-Mei-De-2
Li-Kong-Ming-1
Keywords Pre-cutting technology   Machine composition   Ground deformation   Basic principles   Key techniques     
Abstract: With the development of tunnel construction, the problems of complex geology, complex environments and lack of labour force are gradually becoming stricking. Pre-cutting is a unique technology which lies between mining bored shallow tunneling and shield tunneling. It can be developed to be a new construction technique combined with shallow mining bored tunneling to deal with complex geology and environments so as to significantly improve the mechanization level of tunnel construction and control subsidence more effectively. The composition of machines, principles to control deformation and key points in application are addressed in the paper.
Keywords Pre-cutting technology,   Machine composition,   Ground deformation,   Basic principles,   Key techniques     
published: 2011-03-31
Cite this article:   
WANG Xiu-Ying-1, Liu-Wei-Ning-1, Zhao-Bo-Ming-1 etc .Pre-cutting Method and its Key Techniques in Application[J]  MODERN TUNNELLING TECHNOLOGY, 2011,V48(3): 22-27
URL:  
http://www.xdsdjs.com/EN/      或     http://www.xdsdjs.com/EN/Y2011/V48/I3/22
 
No references of article
[1] ZHANG Minqing1 XIN Weike1 JIA Dapeng1 SI Jingzhao2 WANG Huanlong3.Study and Application of Key Technical Parameters of Pre-grouting in High-pressure Water-rich Deep Shaft Face[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(6): 177-186
[2] WEI Longhai1 WANG Miao2 WU Shuyuan1.Overall Design and Key Technologies of Nanjing Jianning West Road Rivercrossing Tunnel Project[J]. MODERN TUNNELLING TECHNOLOGY, 2022,59(5): 228-236
[3] HAO Junsuo.Study on Key Intelligent Construction Technologies of Super-long and Deepburied Hydraulic Tunnels under Complex Geological Conditions[J]. MODERN TUNNELLING TECHNOLOGY, 2021,58(6): 188-196
[4] ZI Xiaoyu1 SHEN Yusheng1 ZHU Shuangyan1 LUO Ningning2 YANG Jiaqi1 CAO Bangjun1.Study on the Deformation Failure Laws and Support Measures for Tunnels in Layered Phyllite[J]. MODERN TUNNELLING TECHNOLOGY, 2021,58(3): 196-204
[5] XIANG Daoyin1 WANG Minghui1 ZHU Jianguo2 LIU Dalin2 ZHANG Qiao1.Key Techniques for Rapid Construction of Parallel Heading of Karst Tunnel in Chongqing Section of Zhengzhou-Wanzhou Railway[J]. MODERN TUNNELLING TECHNOLOGY, 2020,57(4): 194-200
[6] WANG Mingnian1,2 GUO Xiaohan1,2 CUI Peng1,2 YU Li1,2.Discussion on the Key Techniques for Disaster Prevention, Evacuation and Rescue of Large-scale Railway Tunnel Group in High Altitude Area[J]. MODERN TUNNELLING TECHNOLOGY, 2020,57(1): 1-7
[7] YANG Jihua1 LIANG Guohui2 CAO Jianfeng2 YANG Fengwei1.Study on Key Techniques for TBM1 Section of the Water Conveyance Tunnel of Lanzhou Water Source Construction Project[J]. MODERN TUNNELLING TECHNOLOGY, 2019,56(2): 10-17
[8] WANG Bo-1, GUO Xin-Xin-1, HE Chuan-1, WU De-Xing-2.[J]. MODERN TUNNELLING TECHNOLOGY, 2018,55(5): 1-10
[9] HU Haorui1 ZHAO Lifeng2 SUN Guangchen3,4 Yang Junsheng3.Application of a Steel Reception Sleeve for Shield Arriving in the Water-Rich
Sandy Stratum of the Suzhou Subway
[J]. MODERN TUNNELLING TECHNOLOGY, 2018,55(4): 197-203
[10] SONG Li.Key Techniques for Construction of the Taiyue Mountain Tunnel[J]. MODERN TUNNELLING TECHNOLOGY, 2016,53(5): 194-199
[11] ZENG Lei- 1 Wang-Shao-Fei- 2, 3 He-Xu-Chun- 2, 3 Ruan-Zhi-Min- 2, 3.Concept, Architecture and Key Techniques of Smart Highway Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2016,53(4): 1-8
[12] WANG Lijun.Study of the Construction Techniques for a Four-Arch Tunnel with a Super-Large Section[J]. MODERN TUNNELLING TECHNOLOGY, 2016,53(3): 170-176
[13] .Research on the Key Construction Techniques for an Ultra-Deep Specially-Shaped Diaphragm Wall[J]. MODERN TUNNELLING TECHNOLOGY, 2016,53(2): 207-212
[14] Shu Heng, Wu Shuyuan, Li Jian, Guo Xiaohong.Health Monitoring Design for Extra-Large Diameter Underwater Shield Tunnels[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(4): 32-40
[15] Tuo Yongfei, Guo Xiaohong.General Design and Key Technologies of the Nanjing Weisan Road River-Crossing Tunnel Project[J]. MODERN TUNNELLING TECHNOLOGY, 2015,52(4): 1-6
Copyright 2010 by MODERN TUNNELLING TECHNOLOGY