首页|Accurate stress analysis on rigid central buckle of Ions-span suspension bridges based on submodel method

Accurate stress analysis on rigid central buckle of Ions-span suspension bridges based on submodel method

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Runyang Suspension Bridge (RSB) with the main span of 1490 m is the longest bridge in China and the third longest one in the world. In this bridge the rigid central buckle is employed for the first time in the mid-span of the suspension bridge in China. For such a super-long-span bridge, the traditional finite element (FE) modeling technique and stress analysis methods obviously cannot satisfy the needs of conducting accurate stress analysis on the central buckle. In this paper, the submodel method is introduced and for the first time used in analyzing the stresses of the central buckle. After an accurate FE submodel of the central buckle was specially established according to the analysis results from the whole FE model, the connection technique between the two-scale FE models was realized and the accurate stresses of the central buckle under various vehicle load cases were then conducted based on the submodel method. The calculation results were testified to be accurate and reliable by the field measurements, which show the efficiency and reliability of the submodel method on analyzing the mechanical condition of the central buckle of long-span suspension bridges. Finally, the working behavior and mechanical characteristics of the central buckle of the RSB under vehicle loads were analyzed based on the calculation and measurement results. The results obtained in this paper can provide theoretic references for analyzing and designing the rigid central buckle in long-span suspension bridges in future.

suspension bridgecentral buckleaccurate stresssubmodel methodfield measurements

WANG Hao、LI AiQun、GUO Tong、MA Shuang

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College of Civil Engineering, Southeast University, Nanjing 210096, China

国家高技术研究发展计划(863计划)国家自然科学基金重点项目国家自然科学基金Ph.D.Prgrams Foundation of Ministry of Education of China

2006AA04Z4165053802050608017200802861012

2009

中国科学:技术科学(英文版)
中国科学院

中国科学:技术科学(英文版)

SCIEI
影响因子:1.056
ISSN:1674-7321
年,卷(期):2009.52(4)
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