2004
DOI: 10.1017/s0022112004008778
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The effect of two degrees of freedom on vortex-induced vibration at low mass and damping

Abstract: Although there are a great many papers dedicated to the problem of a cylinder vibrating transverse to a fluid flow ($Y$-motion), there are almost no papers on the more practical case of vortex-induced vibration in two degrees of freedom ($X,Y$ motion) where the mass and natural frequencies are precisely the same in both $X$- and $Y$-directions. We have designed the present pendulum apparatus to achieve both of these criteria. Even down to the low mass ratios, where $m^*\,{=}\,6$, it is remarkable that the free… Show more

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Cited by 612 publications
(452 citation statements)
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References 32 publications
(75 reference statements)
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“…As the equations of motion governing viscous flow are difficult to solve, experiments have been the most important source of new insight. Examples of typical experiments are free vibration of elastically mounted rigid cylinders (Feng, 1968;Vikestad, 1998;Govardhan and Williamson, 2000;Jauvtis and Williamson, 2004) and cylinders undergoing forced motions (Sarpkaya, 1978;Moe and Wu, 1990;Morse and Williamson, 2009;Aglen and Larsen, 2011;Yin and Larsen, 2012). Experiments with long flexible structures have also been performed, both under controlled laboratory conditions (Chaplin et al, 2005;Trim et al, 2005;HueraHuarte et al, 2014) and in more realistic field environments (Huse et al, 1998;Vandiver et al, 2006).…”
Section: Introductionmentioning
confidence: 99%
“…As the equations of motion governing viscous flow are difficult to solve, experiments have been the most important source of new insight. Examples of typical experiments are free vibration of elastically mounted rigid cylinders (Feng, 1968;Vikestad, 1998;Govardhan and Williamson, 2000;Jauvtis and Williamson, 2004) and cylinders undergoing forced motions (Sarpkaya, 1978;Moe and Wu, 1990;Morse and Williamson, 2009;Aglen and Larsen, 2011;Yin and Larsen, 2012). Experiments with long flexible structures have also been performed, both under controlled laboratory conditions (Chaplin et al, 2005;Trim et al, 2005;HueraHuarte et al, 2014) and in more realistic field environments (Huse et al, 1998;Vandiver et al, 2006).…”
Section: Introductionmentioning
confidence: 99%
“…10 Influence of m * on controlled amplitudes for cylinder with ξ = 0.00361 and β K = γ G = 0.1 for NC, respectively. Experimental θ xy data (squares) of Jauvtis and Williamson [23] and numerical (θ xy , θ qy ) results (solid lines) in the absence of control are also overlapped in Fig. 7a-d.…”
Section: Parametric Investigation and Discussionmentioning
confidence: 85%
“…Accordingly, it is deduced that β K and γ G should be of the order of unity. Accordingly, the low-mass-damping 2-DOF cylinder (m * = 2.6, ξ = 0.00361) tested by Jauvtis and Williamson [23] is considered. Comparisons of analytical (circles), numerical (triangles) and experimental (squares) results are displayed in Fig.…”
Section: Parametric Investigation and Discussionmentioning
confidence: 99%
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“…Além dos artigos citados acima é importante salientar os grandes avanços e fundamentais contribuições dos estudos de: Lyons & Patel (1986), Meneghini (1993), Jauvtis & Williamson (2004.…”
Section: Parâmetro Símbolo Expressãounclassified