Effects of high modes on the wind-induced response of super high-rise buildings

被引:0
作者
Ruoqiang Feng
Guirong Yan
Jinming Ge
机构
[1] Southeast University,The Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education
[2] South China University of Technology,State Key Lab of Subtropical Building Science
[3] University of Texas at El Paso,Department of Civil Engineering
来源
Earthquake Engineering and Engineering Vibration | 2012年 / 11卷
关键词
super high-rise building; wind tunnel test; mode couple; wind-induced response;
D O I
暂无
中图分类号
学科分类号
摘要
For super high-rise buildings, the vibration period of the basic mode is several seconds, and it is very close to the period of the fluctuating wind. The damping of super high-rise buildings is low, so super high-rise buildings are very sensitive to fluctuating wind. The wind load is one of the key loads in the design of super high-rise buildings. It is known that only the basic mode is needed in the wind-response analysis of tall buildings. However, for super high-rise buildings, especially for the acceleration response, because of the frequency amplification of the high modes, the high modes and the mode coupling may need to be considered. Three typical super high-rise projects with the SMPSS in wind tunnel tests and the random vibration theory method were used to analyze the effect of high modes on the wind-induced response. The conclusions can be drawn as follows. First, for the displacement response, the basic mode is dominant, and the high modes can be neglected. Second, for the acceleration response, the high modes and the mode coupling should be considered. Lastly, the strain energy of modes can only give the vibration energy distribution of the high-rise building, and it cannot describe the local wind-induced vibration of high-rise buildings, especially for the top acceleration response.
引用
收藏
页码:427 / 434
页数:7
相关论文
共 15 条
[1]  
Banavalkar P.V.(1990)Structural Systems to Improve Wind Induced Dynamic Performance of High Rise Building Journal of Wind Engineering and Industrial Aerodynamics 36 213-224
[2]  
Gu M.(2010)Table of the Tall Buildings Above 180 Meters in China Mainland China Civil Engineering Journal 43 104-109
[3]  
Ye F.(2006)Characteristics of Wind Induced Responses and Equivalent Static Wind Loads of Tall Buildings Engineering Mechanics 23 93-98
[4]  
Irwin Peter A.(2009)Wind Engineering Challenges of the New Generation of Super-tall Buildings Journal of Wind Engineering and Industrial Aerodynamics 97 328-334
[5]  
Kareem A.(1983)Mitigation of Wind Induced Motion of Tall Building Journal of Wind Engineering and Industrial Aerodynamics 11 273-284
[6]  
Ni Z.(2000)Integral of Instantaneous Pressure for Studying Windinduced Vibration of High-rise Buildings Journal of Vibration Engineering 13 544-551
[7]  
Yao W.(1983)The Base Balance Technique for the Determination of Dynamic Wind Loads Journal of Wind Engineering and Industrial Aerodynamics 13 429-439
[8]  
Xie Z.(2004)Mathematical Model Research of Power Spectrum of Wind Loads on CAARC Standard Tall Building Model Journal of Building Structure 25 118-123
[9]  
Tschanz T.(1995)A New Force Balance Data Analysis Method for Wind Response Predictions of Tall Buildings Journal of Wind Engineering and Industrial Aerodynamics 54/55 457-471
[10]  
Davenport A.G.(undefined)undefined undefined undefined undefined-undefined