|
|
Scheme for Transiting Contact Wire from Rigid to Flexible Suspension for Line 9 of Shanghai Urban Rail Transit |
CHEN Wei |
The Third Railway Survey and Design Institute Group Corporation, Tianjin 300251,China |
|
|
Abstract Research purposes:Aiming at the track conditions and engineering characteristics of Line 9 of Shanghai urban rail transit that the track exchanges 4 times from tunnel to ground and especially the track radius in departure and arrival section to the depot is very small, this paper presents a safe and reliable construction scheme after the comparison was made between the run-through scheme and the joint transition scheme by analyzing the flexible and rigid suspension inside and outside the tunnel. And this scheme has been applied for the construction.
Research conclusions:The transition from rigid to flexible suspension is the key techniques of the suspended contact wire in the metro project. On the basis of comprehensive consideration to the requirements of the smooth transition and the accuracy installation of the pantograph and the train speed, the run-through transition scheme was used to this track. By accurately computation and in-site debugging, the rapid transition fro rigid to flexible suspension was achieved in the curve section to reduce the complexity of transition.
|
Received: 31 March 2010
|
|
|
|
|
[ 1 ] GB 50157—2003, 地下铁道设计规范[S].
GB 50157—2003, Code for Design of Metro[S].
[ 2 ] TB 10075—2000, 铁路电力牵引供电隧道内接触网设计规范[S].
TB 10075—2000, Design Code of Railway Electric Traction Feeding in Tunnel[S].
[ 3 ] DGJ 08—109—2004, 城市轨道交通设计规范[S].
DGJ 08—109—2004, Urban Rail Transit Design Standard[S].
[ 4 ] 上海申通轨道交通研究咨询有限公司. 供电、接触网、干线电缆及杂散电流防护设备招标技术文件范本(STB)GD—020101)[Z]. 上海: 上海申通轨道交通研究咨询有限公司, 2006.
The Shanghai Shentong Research and Consultation Corporation. The Model for Technique Document of Equipment Invite Public Bidding of Power Supply, Overhead Catenary, Main Cable and Stray Current(STB)GD—020101)[Z]. Shanghai: The Shanghai Shentong Research and Consultation Corporation, 2006.
[ 5 ] 铁道第三勘察设计院集团有限公司. 上海轨道交通9号线一期工程可行性研究报告[R]. 天津: 铁道第三勘察设计院集团有限公司, 2004.
The Third Railway Survey and Design Institute Group Corporation. The Feasibility Study of the First Period of Shanghai Railway Transit 9th Line Project [R]. Tianjin: The Third Railway Survey and Design Institute Group Corporation, 2004.
[ 6 ] 于万聚. 接触网设计及检测原理[M]. 北京: 中国铁道出版社, 1991.
Yu Wanju. The Design and Examine-measurement Principle of Overhead Canetary[M]. Beijing: China Railway Publishing House, 1991.
[ 7 ] 于松伟, 等. 城市轨道交通供电系统设计原理与应用[M]. 成都: 西南交通大学出版社, 2008.
Yu Songwei, etc. Design Principle and Application of Power System for Urban Rail Transit[M]. Chengdu: Southwest Jiaotong University Press, 2008.
[ 8 ] 胡懿洲. 城市轨道交通架空接触网的悬挂类型[J]. 中国铁路, 2002(5): 50-53.
Hu Yizhou. The Overhead Canetary Type of the Urban Rail Transit[J]. China Railway, 2002(5): 50-53.
[ 9 ] 李金华. 架空刚性悬挂的技术分析[J]. 城市轨道交通研究, 2000(3): 33-37.
Li Jinhua The Technique Analysis of the Rigid Suspension Overhead Catenary [J]. Urban Mass Transit, 2000(3): 33-37.
[ 10 ] 李会杰, 等. 接触网刚性悬挂平面布置研究[J]. 铁道学报, 2003(2): 103-106.
Li Huijie, etc. The Study of Plane Disposal of the Rigid Suspension Overhead Catenary[J]. Journal of Railway Engineering Society, 2003(2): 103-106.
[ 11 ] 韩柱先, 等. 刚性接触网的不平顺分析[J]. 铁道工程学报, 2007(4): 61-64.
Han Zhuxian, etc. Unevenness Analysis of Overhead Rigid Suspension Catenary [J]. Journal of Railway Engineering Society, 2007(4): 61-64.
|
|
|
|