The mitigation of wind-induced excitations of tall buildings was investigated. The shape of a building call be aerodynamically modified by changing the taper of the cross-section. This modification alters the How pattern around the building. and reduces wind-induced(l vibration of tall buildings. A tapered tall building that spreads the vortex-shedding over a broad range of frequencies more effectively reduces cross-wind responses. In this paper, to investigate the tapering effect on the reduction of wind-induced responses of a tapered tall building, a high-frequency force-balance test was conducted. Six types of building model of differing taper ratios-2.5%, 5%, 7-5%. 10%, 15%. and a basic building model of square cross-section-were tested on two typical atmospheric boundary layers representing, suburban and urban areas. The effect of wind direction was also considered. Copyright (c) 2007 John Wiley & Sons, Ltd.
机构:
Civil Engineering Department, Indian Institute of Engineering Science and Technology, HowrahCivil Engineering Department, Hooghly Engineering & Technology College, West Bengal, Chinsurah
机构:
Civil Engineering Department, Hooghly Engineering & Technology College, West Bengal, Chinsurah,712103, IndiaCivil Engineering Department, Hooghly Engineering & Technology College, West Bengal, Chinsurah,712103, India
Paul, Rajdip
Dalui, Sujit Kumar
论文数: 0引用数: 0
h-index: 0
机构:
Civil Engineering Department, Indian Institute of Engineering Science and Technology, Howrah,711103, IndiaCivil Engineering Department, Hooghly Engineering & Technology College, West Bengal, Chinsurah,712103, India