Open Access
Issue
MATEC Web Conf.
Volume 103, 2017
International Symposium on Civil and Environmental Engineering 2016 (ISCEE 2016)
Article Number 04005
Number of page(s) 8
Section Urban Hydrology and Hydraulic Research
DOI https://doi.org/10.1051/matecconf/201710304005
Published online 05 April 2017
  1. M. C. Ong, T. Utnes, L. E. Holmedal, D. Myrhaug, and B. Pettersen, Numerical simulation of flow around a smooth circular cylinder at very high Reynolds numbers. Marine Structures, 22,142–153, (2009) [Google Scholar]
  2. M. Breuer, Large eddy simulation of the subcritical flow past a circular cylinder: numerical and modeling aspects. Int. J. for Numerical Methods in Fluids, 28,1281–1302, (1998) [CrossRef] [Google Scholar]
  3. C. Norberg, Experimental investigation of the flow around a circular cylinder: influence of aspect ratio. J. Fluid Mech, 258, 287–316, (1994) [Google Scholar]
  4. P. Catalano, M. Wang, G. Iaccarino and P. Moin, Numerical simulation of the flow around a circular cylinder at high Reynolds numbers. Int. J. of Heat and Fluid Flow, 24,463–469, (2003) [CrossRef] [Google Scholar]
  5. M.C. Ong, T. Utnes, L.E. Holmedal,, D. Myrhaug and B. Pettersen,, Numerical simulation of flow around a circular cylinder close to a flat seabed at high Reynolds numbers using a k–ε model. Coastal Engineering, 57, 931–947, (2010) [CrossRef] [Google Scholar]
  6. J. Johansson, M.P. Nielsen and L.O. Nielsen, Uniform flow around a circular cylinder in the subcritical range - using the self-induced angular moment method turbulence model. The 8th Asia-Pacific Conference on Wind Engineering, Chennai, India, (2013) [Google Scholar]
  7. F. Tremblay, M. Manhart, and R. Friedrich, LES of Flow around a Circular Cylinder at a Subcritical Reynolds Number with Cartesian Grids. In: R. FRIEDRICH & W. RODI (eds.) Advances in LES of Complex Flows. Springer Netherlands, (2002) [Google Scholar]
  8. E. Achenbach, Distribution of local pressure and skin friction around a circular cylinder in cross-flow up to Re=5x106. J. Fluid Mech., 34, 625–639, (1968) [CrossRef] [Google Scholar]
  9. S. Li, B.W. Karney and G. Liu, FSI research in pipeline systems – A review of the literature. J. of Fluids and Structures, 57,277–297, (2015) [CrossRef] [Google Scholar]
  10. W. Lin, C. Lin, S. Hsieh and S. Dey, Flow Characteristics around a Circular Cylinder Placed Horizontally above a Plane Boundary. J.of Engineering. Mechanics, 135, 697–716, (2009) [CrossRef] [Google Scholar]
  11. A. Nakayama and S.N. Vengadesan, On the influence of numerical schemes and subgrid–stress models on large eddy simulation of turbulent flow past a square cylinder. Int. J. for Numeric. Methods in Fluids, 38, 227–253, (2002) [Google Scholar]
  12. P. M. Abrahamsen, M. C. Ong, B. Pettersen and D. Myrhaug, Large Eddy Simulations of flow around a smooth circular cylinder in a uniform current in the subcritical flow regime. Ocean Engineering, 77,61–73, (2014) [CrossRef] [Google Scholar]
  13. A. Kulyakhtin, O. Shipilova and M. Muskulus, Numerical simulation of droplet impingement and flow around a cylinder using RANS and LES models. J. of Fluids and Structures, 48, 280–294, (2014) [CrossRef] [Google Scholar]
  14. I. Rodríguez, O. Lehmkuhl, J. Chiva, R. Borrell, and A. Oliva, On the flow past a circular cylinder from critical to super-critical Reynolds numbers: Wake topology and vortex shedding. Int. J. of Heat and Fluid Flow, (2015) [Google Scholar]
  15. D. Liang and L. Cheng, Numerical modeling of flow and scour below a pipeline in currents: Part I. Flow simulation. Coastal Engineering, 52, 25–42, (2005) [CrossRef] [Google Scholar]

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