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Results 1 to 25 of 128

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The formula for motion magnitudes of cylinders experiencing vortex-sheddingLEE, Li; ALLEN, Don.Journal of fluids and structures. 2009, Vol 25, Num 8, pp 1369-1370, issn 0889-9746, 2 p.Article

Two-degree-of-freedom VIV of circular cylinder with variable natural frequency ratio: Experimental and numerical investigationsSRINIL, Narakorn; ZANGANEH, Hossein; DAY, Alexander et al.Ocean engineering. 2013, Vol 73, pp 179-194, issn 0029-8018, 16 p.Article

Two-degree-of-freedom vortex-induced vibration of two mechanically coupled cylinders of different diameters in steady currentRAHMANIAN, Mehran; MING ZHAO; LIANG CHENG et al.Journal of fluids and structures. 2012, Vol 35, pp 133-159, issn 0889-9746, 27 p.Article

Strongly coupled flow/structure interactions with a geometrically conservative ALE scheme on general hybrid meshesHYUNG TAEK AHN; KALLINDERIS, Yannis.Journal of computational physics (Print). 2006, Vol 219, Num 2, pp 671-696, issn 0021-9991, 26 p.Article

Effects of mass and damping ratios on VIV of a circular cylinderBAHMANI, M. H; AKBARI, M. H.Ocean engineering. 2010, Vol 37, Num 5-6, pp 511-519, issn 0029-8018, 9 p.Article

Numerical study of heat transfer enhancement of channel via vortex-induced vibrationJUNXIANG SHI; JINGWEN HU; SCHAFER, Steven R et al.Applied thermal engineering. 2014, Vol 70, Num 1, pp 838-845, issn 1359-4311, 8 p.Article

Vortex-induced vibration (VIV) of a circular cylinder in combined steady and oscillatory flowMING ZHAO; KAJA, Kalyani; YANG XIANG et al.Ocean engineering. 2013, Vol 73, pp 83-95, issn 0029-8018, 13 p.Article

High order force components of a near-wall circular cylinder oscillating in transverse direction in a steady currentYING CHEN; SHIXIAO FU; YUWANG XU et al.Ocean engineering. 2013, Vol 74, pp 37-47, issn 0029-8018, 11 p.Article

Dynamic characteristics and VIV of deepwater riser with axially varying structural propertiesCHEW, Weimin; MIN LI; ZHONGQIN ZHENG et al.Ocean engineering. 2012, Vol 42, pp 7-12, issn 0029-8018, 6 p.Article

Modelling of coupled cross-flow/in-line vortex-induced vibrations using double Duffing and van der Pol oscillatorsSRINIL, Narakorn; ZANGANEH, Hossein.Ocean engineering. 2012, Vol 53, pp 83-97, issn 0029-8018, 15 p.Article

Vortex- and wake-induced vibrations of a tandem arrangement of two flexible circular cylinders with far wake interferenceHUERA-HUARTE, F. J; GHARIB, M.Journal of fluids and structures. 2011, Vol 27, Num 5-6, pp 824-828, issn 0889-9746, 5 p.Conference Paper

On the stability of a free-to-rotate short-tail fairing and a splitter plate as suppressors of vortex-induced vibrationASSI, Gustavo R. S; BEARMAN, Peter W; TOGNARELLI, Michael A et al.Ocean engineering. 2014, Vol 92, pp 234-244, issn 0029-8018, 11 p.Article

Response prediction of long flexible risers subject to forced harmonic vibrationRIVEROS, Carlos Alberto; UTSUNOMIYA, Tomoaki; MAEDA, Katsuya et al.Journal of marine science and technology. 2010, Vol 15, Num 1, pp 44-53, issn 1023-2796, 10 p.Article

Vortex modes and vortex-induced vibration of a long, flexible riserXU, J; HE, M; BOSE, N et al.Ocean engineering. 2009, Vol 36, Num 6-7, pp 456-467, issn 0029-8018, 12 p.Article

A simple and efficient direct forcing immersed boundary framework for fluid―structure interactionsJIANMING YANG; STERN, Frederick.Journal of computational physics (Print). 2012, Vol 231, Num 15, pp 5029-5061, issn 0021-9991, 33 p.Article

Numerical investigation of vortex-induced vibration of a circular cylinder in transverse direction in oscillatory flowMING ZHAO; LIANG CHENG; HONGWEI AN et al.Ocean engineering. 2012, Vol 41, pp 39-52, issn 0029-8018, 14 p.Article

Seabed Effects on the Hydrodynamics of a Circular Cylinder Undergoing Vortex-Induced Vibration at High Reynolds NumberSHIXIAO FU; YUWANG XU; YING CHEN et al.Journal of waterway, port, coastal, and ocean engineering. 2014, Vol 140, Num 3, issn 0733-950X, 04014008.1-04014008.12Article

Development of a renewable energy system utilizing vortex induced vibration of a cylinder and principle of leverage aiming for application in deep seaNISHI, Yoshiki; ONO, Keita; KOKUBUN, Kentaroh et al.Journal of marine science and technology. 2012, Vol 17, Num 3, pp 382-389, issn 1023-2796, 8 p.Article

High order conservative differencing for viscous terms and the application to vortex-induced vibration flowsYIQING SHEN; GECHENG ZHA; XIANGYING CHEN et al.Journal of computational physics (Print). 2009, Vol 228, Num 22, pp 8283-8300, issn 0021-9991, 18 p.Article

A concept to reduce vibrations in steel catenary risers by the use of viscoelastic materialsBORGES, F. C. L; ROITMAN, N; MAGLUTA, C et al.Ocean engineering. 2014, Vol 77, pp 1-11, issn 0029-8018, 11 p.Article

A review of recent studies on vortex-induced vibrations of long slender cylindersXIAODONG WU; FEI GE; YOUSHI HONG et al.Journal of fluids and structures. 2012, Vol 28, pp 292-308, issn 0889-9746, 17 p.Article

Quasisteady theory for the hydrodynamic forces on a circular cylinder undergoing vortex-induced vibrationNISHI, Yoshiki; KOKUBUN, Kentaroh; HOSHINO, Kunihiro et al.Journal of marine science and technology. 2009, Vol 14, Num 3, pp 285-295, issn 1023-2796, 11 p.Article

Prediction and analysis of fatigue damage due to cross-flow and in-line VIV for marine risers in non-uniform currentHONGXIANG XUE; WENYONG TANG; XUE QU et al.Ocean engineering. 2014, Vol 83, pp 52-62, issn 0029-8018, 11 p.Article

Vortex-Induced Dynamic Response Analysis for the Submerged Floating Tunnel System under the Effect of CurrentsXIANG YIQIANG; CHAO CHUNFENG.Journal of waterway, port, coastal, and ocean engineering. 2013, Vol 139, Num 3, pp 183-189, issn 0733-950X, 7 p.Article

Experimental study of vortex-induced vibrations of a pipeline near an erodible sandy seabedBING YANG; GAO, Fu-Ping; JENG, Dong-Sheng et al.Ocean engineering. 2008, Vol 35, Num 3-4, pp 301-309, issn 0029-8018, 9 p.Article

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