1993
DOI: 10.1016/0167-6105(93)90009-d
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Aerodynamic damping and vortex excitation on an oscillating prism in turbulent shear flow

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Cited by 61 publications
(15 citation statements)
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“…The aerodynamic force related to structure motion was separated from the total aerodynamic force, and then it was decomposed into aerodynamic stiff force and aerodynamic damping force to obtain aerodynamic damping. Vickery and Steckley [49] proposed a negative aerodynamic damping model. Cooper et al [50] attempted to measure wind pressure on a harmonically vibrating building model to obtain total aerodynamic force.…”
Section: Across-wind Aerodynamic Dampingmentioning
confidence: 99%
“…The aerodynamic force related to structure motion was separated from the total aerodynamic force, and then it was decomposed into aerodynamic stiff force and aerodynamic damping force to obtain aerodynamic damping. Vickery and Steckley [49] proposed a negative aerodynamic damping model. Cooper et al [50] attempted to measure wind pressure on a harmonically vibrating building model to obtain total aerodynamic force.…”
Section: Across-wind Aerodynamic Dampingmentioning
confidence: 99%
“…Many earlier studies were also found (e.g. Vickery and Steckley, 1993;Marukawa et al, 1996;Watanabe et al, 1997). The empirical functions proposed by Cao et al (2012) and Cheng et al (2002) are adopted in the current simulation to determine the aerodynamic damping ratio of tall buildings in the along-wind and across-wind directions, respectively.…”
Section: Introductionmentioning
confidence: 98%
“…On the contrary, the theory breaks down at lower velocities, in particular near the critical speed of vortex shedding. The interaction between vortex shedding and galloping is much more complicated and the results are completely different if one consider either aeroelastic phenomenon separately [8][12] [14] .…”
Section: Discussionmentioning
confidence: 99%