Stress optimization analysis of long-span concrete-filled steel tube arch bridge based on Midas full-bridge finite element analysis model

被引:1
作者
Qi, Lei [1 ]
Zhao, Yangyang [2 ]
机构
[1] Chelbi Engn Consultants Inc, Business Dev Dept, Beijing 100029, Peoples R China
[2] Chelbi Engn Consultants Inc, Survey & Design Dept 2, Beijing 100029, Peoples R China
来源
PROCEEDINGS OF THE INDIAN NATIONAL SCIENCE ACADEMY | 2023年 / 89卷 / 02期
关键词
CFST; Arch bridge; Arch rib stress; Finite element analysis; Midas; RESIDUAL-STRESS; PIPE;
D O I
10.1007/s43538-023-00158-w
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
CFST is a new building material developed on the basis of steel bars and concrete, which is frequently employed in bridge construction in China. The arch rib is the main stress part CFST arch bridge has a long span, and the safety of the arch rib directly determines the working performance of the whole bridge. Therefore, to better understand the stress of the arch bridge and ensure its safety of the bridge, the research employs the finite element program Midas to establish a long span concrete filled steel tube full bridge model and analyzes axial force, stress, and displacement of arch rib in each construction stage of the arch bridge. The results show that in different construction stages, the axial force on each section increases gradually. The upper and lower edges of the steel pipe are shown as a gradually increasing negative stress. The displacement change between each section is between (2-4) mm. To sum up, the finite element full bridge analysis based on Midas can accurately obtain the stress state of long-span bridges with CFST arcs. By using this technology, data from large-span CFST arch bridges may be efficiently employed in bridge optimum building, improving the load-bearing capabilities of the arch bridge.
引用
收藏
页码:267 / 278
页数:12
相关论文
共 25 条
  • [1] Ahmed U., 2021, SCI PUBL GROUP, V9, P138
  • [2] Finite element modeling of the breakage behavior of agricultural biomass pellets under different heights during handling and storage
    Awny, A.
    Radwan, Mona N.
    Nour, M. A.
    Fouda, Sally S.
    Al-Dhumri, Sami A.
    Soliman, Soliman M.
    El-Tahan, Amira M.
    El-Saadony, Mohamed T.
    Faid-Allah, Reham S. A.
    [J]. SAUDI JOURNAL OF BIOLOGICAL SCIENCES, 2022, 29 (03) : 1407 - 1415
  • [3] Ayaanle Coskun E., 2020, IJERT INT J ENG RES, V9, P1034
  • [4] Parameters of cold pilgering of seamless steel tube
    Chu, Zhi-bing
    Xue, Zhan-yuan
    Zhang, Duo
    Wang, Huan-zhu
    Li, Wei
    Liu, Ren-huai
    Huang, Qing-xue
    [J]. JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2019, 26 (06) : 593 - 601
  • [5] FEM analysis of residual stress induced by repair welding in SUS304 stainless steel pipe butt-welded joint
    Dai, Peiyuan
    Wang, Yifeng
    Li, Suo
    Lu, Shijie
    Feng, Guangjie
    Deng, Dean
    [J]. JOURNAL OF MANUFACTURING PROCESSES, 2020, 58 : 975 - 983
  • [6] Experimental Research and Finite Element Analysis on Structural Stability of Disc-Buckle Type Formwork Support
    Dong, Jinfeng
    Liu, Haiqing
    Xia, Shengyong
    Cheng, Yang
    Lei, Ming
    Chen, Zimu
    [J]. INTERNATIONAL JOURNAL OF STEEL STRUCTURES, 2022, 22 (03) : 748 - 766
  • [7] Condition evaluation for through and half-through arch bridges considering robustness of suspended deck systems
    Fan, Bing-Hui
    Su, Jia-Zhan
    Chen, Bao-Chun
    [J]. ADVANCES IN STRUCTURAL ENGINEERING, 2021, 24 (05) : 962 - 976
  • [8] Influencing factors and control measures of excavation on adjacent bridge foundation based on analytic hierarchy process and finite element method
    Feng, Shuangxi
    Lei, Huayang
    Wan, Yongfeng
    Jin, Haiyan
    Han, Jun
    [J]. FRONTIERS OF STRUCTURAL AND CIVIL ENGINEERING, 2021, 15 (02) : 461 - 477
  • [9] Evaluation on ultimate load-carrying capacity of concrete-filled steel tubular arch structure with preload
    Huang, Fuyun
    Cui, Yulong
    Dong, Rui
    Wei, Jiangang
    Chen, Baochun
    [J]. ADVANCES IN STRUCTURAL ENGINEERING, 2019, 22 (13) : 2755 - 2770
  • [10] Finite element modeling of shape memory polyurethane foams for treatment of cerebral aneurysms
    Jarrah, H. R.
    Zolfagharian, A.
    Bodaghi, M.
    [J]. BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2022, 21 (01) : 383 - 399