|
|
Study on 500 m Hyperbolic Parabolic Space Cable Pedestrian Suspension Bridge |
ZHAXI Luo-bu1, SILANG Yong-zong2, XU Wen-ping3, LI Hong-yi3, SHU Yin-jia3 |
1. Research Institute of traffic survey and design of Tibet Autonomous Region, Lhasa Tibet, China, 850000; 2. College of Engineering, Tibet University, Lhasa Tibet, China, 850000; 3. College of Civil Engineering, Southeast University, Nanjing Jiangsu 210096, China |
|
|
Abstract This paper proposes a hyperbolic parabolic space cable pedestrian suspension bridge structure system based on the egg-shaped arched tower based on the wind resistance requirements of a super-long-span pedestrian suspension bridge. Parallel cables bear vertical loads, and two sets of cable systems of hyperbolic parabolic carbon fiber space cables and wind-resistant cables improve torsional stiffness, work together, complement each other, and significantly increase space rigidity. It can fundamentally solve the problem of wind stability of extra-long-span pedestrian suspension bridges, and can build 500-meter-long super-span pedestrian suspension bridges.
|
Received: 25 December 2021
|
|
|
|
[1] XIANG Hai-fan, GE Yao-jun. On Aerodynamic Limits to Suspension Bridges[J]. China Civil Engineering Journal, 2005, 38(1):60-70. (in Chinese) [2] WANG Zhong-bin. Design of Cable Systems of Zhangjiajie Grand Canyon Glass Floor Bridge[J]. Bridge Construction, 2017, 47(3):83-87. (in Chinese) [3] ZHANG Xin-jun. Study of the Wind Stability of Long-span Suspension Bridges with Spatial Cable Systems[J]. China Civil Engineering Journal, 2011, 44(6):80-86. (in Chinese) [4] TANG H J, LI Y L, SHUM K M. Flutter Performance of Long-span Suspension Bridges under Non-uniform Inflow[J]. Advances in Structural Engineering, 2018, 21(2):201-213. [5] LUO Xi-heng, XIAO Ru-cheng, XIANG Hai-fan. Cable Shape Analysis of Suspension Bridge with Spatial Cables[J]. Journal of Tongji University:Natural Science, 2004, 32(10):1349-1354. (in Chinese) [6] WEI Zhi-gang, GE Yao-jun, YANG Yong-xin. Effectiveness of Storm Ropes for Long Suspension Bridge's Flutter Control[J]. Journal of Tongji University:Natural Science, 2008, 36(12):1628-1632. (in Chinese) [7] ASTIZ M A. Flutter Stability of Very Long Suspension Bridges[J].Journal of Bridge Engineering, 1998, 3(3):132-139. [8] CHEN Ze. Conceptual Design and Wind Resistance Research of the 5000m-span Suspension Bridge with CFRP Cables[D]. Chengdu:Southwest Jiaotong University, 2016. (in Chinese) |
|
|
|