All Issue

2016 Vol.29, Issue 1 Preview Page
2016. pp. 9-18
Abstract
References
1
P., Anagnostopoulos and P.W., Bearman, 1992. Response Characteristics of a Vortex-Excited Cylinder at Low Reynolds Numbers. J. Fluids & Struct., 14, pp.39-50.
10.1016/0889-9746(92)90054-7
2
H., Blackburns and R., Henderson, 1996. Lock-In Behavior in Simulated Vortex-Induced Vibration. Exp. Therm. & Fluid Sci., 12, pp.184-189.
10.1016/0894-1777(95)00093-3
3
Blevins R.D. 1974Flow Induced Vibration of Vluff Structures, Degree of Doctor of Philosophy,California Institute of Technology146
4
W., Dettmer and D., Perić, 2006. A Computational Framework for Fluid-Rigid Body Interaction: Finite Element Formulation and Applications. Comput. Methods Appl. Mech. & Eng, 195, pp.1633-1666.
10.1016/j.cma.2005.05.033
5
C.C., Feng, 1963. The Measurement of Vortex Induced Effects in Flow Past Stationary and Oscillating and D-Sectioin Cylinders. Degree of Master, National Taiwan University, p.100.
6
R.D., Gabbai and H., Benaroya, 2005. An Overview of Modeling and Experiments of Vortex-Induced Vibration of Circular Cylinders. Fluid of Sound & Vib, 282, pp.575-616.
10.1016/j.jsv.2004.04.017
7
E., Guilmineau and P. , Queutey, 2004. Numerical Simulation of Vortex-Induced Vibration of a Circular Cylinder with Low Mass-Damping in a Turbulent Flow. J. Fluids & Struct, 19, pp.449-466.
10.1016/j.jfluidstructs.2004.02.004
8
R.A., Groncalves, P.R.F., Teixeira and E., Didier, 2012. Numerical Simulations of Low Reynolds Number Flows Past Elastically Mounted Cylinder. Therm. Eng., 11, pp.61-67.
10.5380/reterm.v11i1-2.62002
9
Lee H.B. Rhee S.H. 2010Ananlysis of Two- Dimensional Flow Around an Oscillating Cylinder using Moving Mesh TechniquesKorean Soc. Comput. Fluids Eng.542547
10
Lee J.S. Kim J.D. 1994An Analysis of Coupled Wind-Structure InteractionJ. Comput. Struct. Eng. Inst. Korea24410
11
T.L., Lee and Y.S., Jang, 2013. A FSI Simulation Technique based on Immersed Finite Element Method. J. Comput. Struct. Eng. Inst. Korea, 26, pp.43-47.
12
A., Placzek, J., Sigrist and A., Hamdouni, 2009. Numerical Simulation of an Oscillating Cylinder in a Cross-Flow at Low Reynolds Number. Comput. & Fluids, 38, pp.80-100.
10.1016/j.compfluid.2008.01.007
13
T.K., Prasanth and S., Mittal, 2008. Vortex-Induced Vibrations of a Circular Cylinder at Low Reynolds Number. J. Fluid Mech.,, 594, pp.463-491.
10.1017/S0022112007009202
14
D., Rockwell, 2001. Forced and Wake Modes of an Oscillating Cylinder. J. Fluid & Struct., 15, pp.523-532.
10.1006/jfls.2000.0363
15
T., Sarpkaya, 2004. A Critical Review of the Intrinsic Nature of Vortex-induced Vibrations. J. Fluids & Struct., 19, pp.389-447.
10.1016/j.jfluidstructs.2004.02.005
16
C.H.K., Willianson, 1989. Oblique and Parallel Modes of Vortex Shedding in the Wake of a Circular Cylinder at low Reynolds Numbers. J. Fluids Mech., 206, pp.579-627.
10.1017/S0022112089002429
Information
  • Publisher :Computational Structural Engineering Institute of Korea
  • Publisher(Ko) :한국전산구조공학회
  • Journal Title :Journal of the Computational Structural Engineering Institute of Korea
  • Journal Title(Ko) :한국전산구조공학회 논문집
  • Volume : 29
  • No :1
  • Pages :9-18
  • Received Date : 2015-08-09
  • Revised Date : 2015-10-08
  • Accepted Date : 2015-10-16
Journal Informaiton Journal of the Computational Structural Engineering Institute of Korea Journal of the Computational Structural Engineering Institute of Korea
  • NRF
  • KOFST
  • crossref crossmark
  • crossref cited-by
  • crosscheck
  • orcid
  • open access
  • ccl
Journal Informaiton Journal Informaiton - close