Life-Cycle Assessment of Long-Span Bridge's Wind Resistant Performance Considering Multisource Time-Variant Effects and Uncertainties

被引:7
|
作者
Chu, Xiaolei [1 ]
Cui, Wei [1 ,2 ]
Zhao, Lin [1 ,2 ,3 ]
Ge, Yaojun [1 ,2 ]
机构
[1] Tongji Univ, State Key Lab Disaster Reduct Civil Engn, Shanghai 200092, Peoples R China
[2] Tongji Univ, Key Lab Transport Ind Wind Resistant Technol Brid, Shanghai 200092, Peoples R China
[3] Chongqing Jiaotong Univ, State Key Lab Mt Bridge & Tunnel Engn, Chongqing 400074, Peoples R China
基金
中国国家自然科学基金;
关键词
Long-span bridge; Typhoon hazard; Climate change; Structural deterioration; Flutter derivatives (FD); Uncertainty; AMBIENT MODAL IDENTIFICATION; PROBABILISTIC FLUTTER ANALYSIS; VORTEX-INDUCED VIBRATION; FREQUENCY-DOMAIN; SYSTEM-IDENTIFICATION; BUFFETING RESPONSE; STRUCTURAL DAMAGE; FLEXIBLE BRIDGES; WARMING CLIMATE; HURRICANE RISK;
D O I
10.1061/(ASCE)ST.1943-541X.0003388
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper examines the life-cycle wind resistant performance of a constructed long-span suspension bridge in the coastal region of China, aiming to quantify the multisource time-variant effects and uncertainties and offering a reference for designs of long-span bridges in the future. Randomness from modal frequencies, damping ratios, and identification uncertainty of flutter derivatives (FDs) was considered; then, their effects on probability of flutter failure and probability of exceeding the predefined buffeting response root-mean square (RMS) are discussed. Firstly, results of full-track tropical cyclone (TC) simulation under various climate warming scenarios are reviewed; then, the time-variant probability density function (PDF) of annual extreme wind speed is discussed. Secondly, 6-year modal frequencies and damping ratios of a long-span suspension bridge with a center-slotted section were extracted by fast Bayesian FFT method with structural health monitoring (SHM) data, which were utilized to explore the deterioration rules of structural properties. Thirdly, FDs were modeled from a probabilistic perspective based on complex Wishart distribution, which were identified in the turbulent flow and the frequency domain by Bayesian inference. The posterior distributions of FDs, namely identification uncertainty, were quantified by Markov chain Monte Carlo (MCMC) sampling. This paper finds that for flutter resistant performance, the time-variant effects (i.e., modal frequencies and PDFs of extreme wind speed) will make the flutter failure probability seven times larger than the initial value; for the probability of exceeding the predefined buffeting response RMS, however, the time-variant effects will make a negligible difference.
引用
收藏
页数:15
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  • [1] Life-cycle performance monitoring and evaluation of long-span bridges
    Ou, J. P.
    Zhang, X. G.
    Li, H.
    Pei, M. S.
    Li, N.
    [J]. BRIDGE MAINTENANCE, SAFETY, MANAGEMENT AND LIFE EXTENSION, 2014, : 40 - 56
  • [2] Digital twin-based life-cycle seismic performance assessment of a long-span cable-stayed bridge
    Lin, Kaiqi
    Xu, You-Lin
    Lu, Xinzheng
    Guan, Zhongguo
    Li, Jianzhong
    [J]. BULLETIN OF EARTHQUAKE ENGINEERING, 2023, 21 (02) : 1203 - 1227
  • [3] Digital twin-based life-cycle seismic performance assessment of a long-span cable-stayed bridge
    Kaiqi Lin
    You-Lin Xu
    Xinzheng Lu
    Zhongguo Guan
    Jianzhong Li
    [J]. Bulletin of Earthquake Engineering, 2023, 21 : 1203 - 1227
  • [4] Life-cycle assessment for flutter probability of a long-span suspension bridge based on operational monitoring data
    Tan, Junfeng
    Chu, Xiaolei
    Cui, Wei
    Zhao, Lin
    [J]. Journal of Infrastructure Intelligence and Resilience, 2024, 3 (03):
  • [5] Life-cycle based structural performance of long-span CFST hybrid arch bridge: A study on arch of Pingnan Third Bridge
    Chen, Bo-Wen
    Han, Lin-Hai
    Qin, Da-Yan
    Li, Wei
    [J]. JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2023, 207
  • [6] Life-Cycle Assessment Comparison for Long-Span Cable and Truss Structural Systems: Case Study
    Trussoni, Matthew
    Simatic, Evan
    Raebel, Christopher H.
    Huttelmaier, H. Peter
    [J]. JOURNAL OF ARCHITECTURAL ENGINEERING, 2015, 21 (01)
  • [7] Estimating life-cycle monetary losses due to wind hazards: Fragility analysis of long-span bridges
    Seo, Dong-Woo
    Caracoglia, Luca
    [J]. ENGINEERING STRUCTURES, 2013, 56 : 1593 - 1606
  • [8] Risk assessments of long-span bridges considering life-cycle cost concept and near-fault ground motion effect
    Sung-Ho Han
    Hyo-Nam Cho
    Tae-Jun Cho
    Sung-Woo Shin
    Tae-Soo Kim
    [J]. International Journal of Steel Structures, 2010, 10 : 51 - 63
  • [9] Experimental Research on Wind Resistant Performance of Free- Standing Pylon of Long-Span Cable-Stayed Bridge
    Zhou, Ya-Dong
    Sun, Yan-Guo
    Li, Ming
    [J]. Bridge Construction, 2020, 50 (03) : 52 - 57
  • [10] Risk Assessments of Long-Span Bridges Considering Life-Cycle Cost Concept and Near-Fault Ground Motion Effect
    Han, Sung-Ho
    Cho, Hyo-Nam
    Cho, Tae-Jun
    Shin, Sung-Woo
    Kim, Tae-Soo
    [J]. INTERNATIONAL JOURNAL OF STEEL STRUCTURES, 2010, 10 (01) : 51 - 63