ZHANG Zhi-tian, GE Yao-jun, CHEN Zheng-qing. A NEW AERODYNAMIC METHOD FOR LONG-SPAN BRIDGE BUFFETING ANALYSIS[J]. Engineering Mechanics, 2006, 23(6): 94-101.
Citation: ZHANG Zhi-tian, GE Yao-jun, CHEN Zheng-qing. A NEW AERODYNAMIC METHOD FOR LONG-SPAN BRIDGE BUFFETING ANALYSIS[J]. Engineering Mechanics, 2006, 23(6): 94-101.

A NEW AERODYNAMIC METHOD FOR LONG-SPAN BRIDGE BUFFETING ANALYSIS

More Information
  • Received Date: July 09, 2004
  • Revised Date: December 21, 2004
  • Put forward a new method for long-span bridge buffeting analysis which using quasi-steady aerodynamic stiffness and unsteady aerodynamic damping based directly on wind tunnel test. The wind tunnel test of bridge Segment model shows that the new aerodynamic model can describe the aerodynamic stiffness and damping properties of bridge structure more accurately. As an example, both the numerical results of the new model and traditional flutter-buffeting model were presented and compared for East Sea Bridge under wind loads. The computed results and wind tunnel test results show that the new model gives accurate outcomes and has explicit physical meanings.
  • Related Articles

    [1]YAO Zhi-yong, ZHANG Nan, CHENG Ze-nong. CALCULATION OF THE UNSTEADY AERODYNAMIC FORCES ON MOVING TRAINS UNDER CROSSWINDS[J]. Engineering Mechanics, 2020, 37(10): 238-246. DOI: 10.6052/j.issn.1000-4750.2019.12.0730
    [2]WANG Lei, QIN Ben-dong, LIANG Shu-guo, ZOU Liang-hao. ANALYSIS ON CROSSWIND AERODYNAMIC STIFFNESS OF SUPER TALL BUILDINGS[J]. Engineering Mechanics, 2017, 34(11): 135-144. DOI: 10.6052/j.issn.1000-4750.2016.07.0516
    [3]WANG Lei, LIANG Shu-guo, ZHANG Zhen-hua, WANG Shu-liang, ZOU Liang-hao, TANG Huai-qiang. ACROSS WIND AERODYNAMIC DAMPING OF SUPER TALL BUILDINGS[J]. Engineering Mechanics, 2017, 34(1): 145-153. DOI: 10.6052/j.issn.1000-4750.2015.05.0439
    [4]CAO Hui-lan, QUAN Yong, GU Ming. EFFECT OF CORNER-CUT AND TAPERING ON ACROSS-WIND AERODYNAMIC DAMPING OF SQUARE HIGH-RISE BUILDINGS[J]. Engineering Mechanics, 2013, 30(11): 87-93,100. DOI: 10.6052/j.issn.1000-4750.2012.07.0547
    [5]ZENG Xiao-hui, LAI Jiang. HUNTING STABILITY OF HIGH-SPEED RAILWAY VEHICLE CONSIDERING THE ACTIONS OF STEADY AERODYNAMIC LOADS[J]. Engineering Mechanics, 2013, 30(4): 52-58. DOI: 10.6052/j.issn.1000-4750.2011.12.0886
    [6]FAN She-xin, ZHU Jiang-xin, MO Yi-wei. GALLOPING CRITERION OF ICED BUNDLED CONDUCTORS FROM AERODYNAMICAL TORSIONAL RIGIDITYA[J]. Engineering Mechanics, 2012, 29(11): 381-384. DOI: 10.6052/j.issn.1000-4750.2011.03.0159
    [7]WU Hai-yang, LIANG Shu-guo, CHEN Zheng-qing. RESEARCH ON THE AERODYNAMIC DAMPING RATIOS OF SQUARE TALL BUILDINGS IN ACROSS -WIND DIRECTION UNDER STRONG WIND[J]. Engineering Mechanics, 2010, 27(10): 96-103.
    [8]ZHANG Wei, GE Yao-jun. EVOLUTION OF UNSTEADY AERODYNAMIC FORCES FOR BODIES FROM FLOW MAPS[J]. Engineering Mechanics, 2009, 26(7): 192-204.
    [9]WU Yan, XIE Hua, WANG Tong-guang. MODIFICATION OF CALCULATING UNSTEADY AERODYNAMIC CHARACTERISTICS OF WIND TURBINE BLADES[J]. Engineering Mechanics, 2008, 25(10): 54-059.
    [10]QUAN Yong, GU Ming. WIND TUNNEL TEST STUDY OF AERODYNAMIC DAMPING OF SUPER HIGHRISE BUILDINGS[J]. Engineering Mechanics, 2004, 21(1): 26-30,4.

Catalog

    Article Metrics

    Article views (825) PDF downloads (286) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return