UFR 2-15 References

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Benchmark on the Aerodynamics of a Rectangular 5:1 Cylinder (BARC)

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Description

Test Case Studies

Evaluation

Best Practice Advice

References

Flows Around Bodies

Underlying Flow Regime 2-15

References

  1. Arslan, T., Pettersen B., Andersson H.I., 2011. Calculations of the flow around rectangular shaped floating structures, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.
  2. Bartoli, G., Bruno, L., Buresti, G., Ricciarelli, F., Salvetti, M.V., Zasso, A., 2008a. BARC Overview Document. http://www.aniv-iawe.org/barc.
  3. Bartoli, G., Bruno, L., Buresti, G., Ricciarelli, F., Salvetti, M.V., Zasso, A., 2008b. Requests for Computational Simulations. http://www.aniv-iawe.org/barc.
  4. Bartoli, G., Bruno, L., Buresti, G., Ricciarelli, F., Salvetti, M.V., Zasso, A., 2008c. Requests for Wind Tunnel Tests. http://www.aniv-iawe.org/barc.
  5. Bartoli, G., Borsani, A., Mannini, C., Marra, A.M., Procino, L., Ricciardelli, F., 2011. Wind tunnel study on the aerodynamics of a 5:1 rectangular cylinder in smooth flow, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.
  6. Bearman, P.W., 1969. On vortex shedding from a circular cylinder in the critical Reynolds number regime. Journal of Fluid Mechanics 37, 577 – 585.
  7. Bronkhorst, A.J., Geurts, C.P.W., van Bentum, C.A., 2011. Unsteady pressure measurements on a 5:1 rectangular cylinder, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.
  8. Bruno, L., Fransos, D., Coste, N., Bosco, A., 2010. 3D flow around a rectangular cylinder: a computational study. Journal of Wind Engineering and Industrial Aerodynamics 98, 263 – 276.
  9. Bruno, L., Fransos, D., 2011. Probabilistic evaluation of the aerodynamic properties of a bridge deck. Journal of Wind Engineering and Industrial Aerodynamics 99, 718 – 728.
  10. Bruno, L., Coste, N., Fransos, D., 2011. Effect of the spanwise features of the computational domain on the simulated flow around a rectangular 5:1 cylinder, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.
  11. Bruno, L., Coste, N., Fransos, D., 2012. Simulated flow around a rectangular 5:1 cylinder: Spanwise discretisation

effects and emerging flow features. Journal of Wind Engineering and Industrial Aerodynamics 104 – 106, 203 – 215.

  1. Bruno, L., Salvetti, M.V., Ricciardelli, F., 2014.

Benchmark on the Aerodynamics of a Rectangular 5:1 Cylinder: an overview after the first four years of activity.

Journal of Wind Engineering and Industrial Aerodynamics, in press (DOI: 10.1016/j.jweia.2014.01.005)

  1. Carassale, L., 2008. Flow-induced actions on cylinders in statistically-symmetric cross flow. Probabilistic Engineering Mechanics 24(3), 323 – 339.
  2. De Grenet, E.T., Ricciardelli, F., 2005. The span-wise correlation of aerodynamic forces on a rectangular cylinder for different vibration regimes. In: Proceedings of the 6th European Conference on Structural Dynamics Eurodyn 2005, Paris, France.
  3. Ercoftac test case LES2, Ercoftac database case 43.[1]

\bibitem[{Ercoftac UFR2-02()}]{Ercoftacwiki} Ercoftac QNET-CFD Knowledge Base Wiki, Underlying Flow Regime UFR2-02.[2]

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\bibitem[{Grozescu et~al.(2011a)}]{Grozescu2011a} Grozescu, A.N., Salvetti, M.V., Camarri, S., Buresti, G., 2011. Variational multiscale large-eddy simulations of the BARC flow configuration. In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.

\bibitem[{Grozescu et~al.(2011b)}]{Grozescu2011b} Grozescu, A.N., Bruno, L., Fransos, D., Salvetti, M.V., 2011. Large-eddy simulations of of a Benchmark on the Aerodynamics of a Rectangular 5:1 Cylinder. In: Proceedings of the 20th Italian Conference on Theoretical and Applied Mechanics, Bologna, Italy.

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\bibitem[{Mannini et~al.(2010)}]{mannini2010} Mannini, C., \v{S}oda, A., Schewe, G., 2010. Unsteady RANS modelling of flow past a rectangular cylinder: Investigation of Reynolds number effects. Computational Fluids 39(9), 1609--1624.

\bibitem[{Mannini et~al.(2011)}]{mannini2011} Mannini, C., \v{S}oda, A., Schewe, G., 2011. Numerical investigation on the three-dimensional unsteady flow past a 5:1 rectangular cylinder. Journal of Wind Engineering and Industrial Aerodynamics 99, 469--482.

\bibitem[{Mannini and Schewe(2011)}]{mannini_sch_2011} Mannini, Schewe, G., 2011. Numerical study on the three-dimensional unsteady flow past a 5:1 rectangular cylinder using the DES approach, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.

\bibitem[{Matsumoto et~al.(2003)}]{matsumoto} Matsumoto, M., Shirato, H., Aaraki, K., Haramura, T., Hashimoto, T., 2003. Spanwise coherence characteristic of surface pressure field on 2D bluff bodies. Journal of Wind Engineering and Industrial Aerodynamics 91, 155--163.

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\bibitem[{Nakamura and Nakshima(1986)}]{nakamura1986} Nakamura, Y., Nakashima, M., 1986. Vortex excitation of prisms with elongated rectangular, H and |- cross-sections. Journal of Fluid Mechanics 163, 149--169.

\bibitem[{Nakamura et~al.(1991)}]{nakamura1991} Nakamura, Y., Ohya, Y., Tsuruta, H., 1991. Experiments on vortex shedding from flat plates with square leading and trailing edges. Journal of Fluid Mechanics 222, 437--447.

\bibitem[{Nakamura et~al.(1996)}]{nakamura1996} Nakamura, Y., Ohya, Y., Ozono, S., Nakamaya, R., 1996. Experimental and numerical analysis of vortex shedding from elongated rectangular cylinders at low Reynolds numbers 200-1000. Journal of Wind Engineering and Industrial Aerodynamics 65, 301--308.

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\bibitem[{Okajima(1982)}]{okajima1982} Okajima, A., 1982. Strouhal numbers of rectangular cylinders. Journal of Fluid Mechanics 123, 379--398.

\bibitem[{Okajima et~al. (1983)}]{okajima1983} Okajima, A., Sugitani, K., Mizota, T., 1983. Strouhal Number and Base Pressure Coefficient of Rectangular Cylinders : The Case of a Section of a Width/Height Ratio of 1-9. Transactions of the Japan Society of Mechanical Engineers Series B, 49(447), 2551--2558.

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%\bibitem[{Pope(2000)}]{pope} %Pope, S.B., 2000. Turbulent Flows, Cambridge University Press.

{ \bibitem[{Posdziech and Grundmann(2007)}]{Posdziech2007} Posdziech, O., Grundmann, R., 2007. A systematic approach to the numerical calculation of fundamental quantities of the two-dimensional flow over a circular cylinder. Journal of Fluids and Structures 23, 479--499.

\bibitem[{Qu et al.(2013)}]{Qu2013} Qu, L., Norberg, C., Davidson, L., Peng, S.H., Wang, F., 2013. Quantitative numerical analysis of flow past a circular cylinder at Reynolds number between 50 and 200. Journal of Fluids and Structures 39, 347--370. }

\bibitem[{Ribeiro(2011)}]{ribeiro2011} Ribeiro, A.F.P., 2011. Unsteady RANS modelling of flow past a rectangular 5:1 cylinder: investigation of edge sharpness effects, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.

\bibitem[{Ricciardelli and Marra(2008)}]{ricciardelli2008} Ricciardelli, F., Marra, A.M., 2008. Sectional aerodynamic forces and their longitudinal correlation on a vibrating 5:1 rectangular cylinder. In: Proceedings of the 6th International Colloquium on Bluff Body Aerodynamics and Applications, Milan, Italy.

\bibitem[{Ricciardelli(2010)}]{ricciardelli2010} Ricciardelli, F., 2010. Effects of the vibration regime on the spanwise correlation of the aerodynamic forces on a 5:1 rectangular cylinder, Journal of Wind Engineering and Industrial Aerodynamics 98, 215--225.

\bibitem[{Rodi (1997)}]{rodi1997} Rodi, W., 1997. Comparison of LES and RANS calculations of the flow around bluff bodies, Journal of Wind Engineering and Industrial Aerodynamics 69--71, 55--75.

%\bibitem[{Rodi et~al.(1995)}]{rodi1995} %Rodi, W., Ferziger, J.H., Breuer M., Pourquie,M., 1995. Proceedings of the Workshop on Large-Eddy Simulation of Flows past Bluff Bodies, Rottach-Egern, Germany. % \bibitem[{Rodi(2002)}]{rodi2002} Rodi, W., 2002. Large-Eddy Simulations of the Flow Past Bluff Bodies. In: Launder, B.E., Sandham, N.D. (Eds.), Closure strategies for turbulent and transitional flows. Cambridge University Press, 361-–391.

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\bibitem[{Schewe(1983)}]{schewe1983} Schewe, G., 1983. On the Force Fluctuations Acting on a Circular Cylinder in Cross Flow From Subcritical up to Transcritical Reynolds Numbers, Journal of Fluid Mechanics 153, 265--285.

\bibitem[{Schewe(1989)}]{schewe1989} Schewe, G. 1989. Nonlinear Flow induced Resonances of an H shaped Section. Journal of Fluids and Structures 3, 327--348.

\bibitem[{Schewe(2006)}]{schewe2006} Schewe, G., 2006. Influence of the Reynolds-number on flow-induced vibrations of generic bridge sections. In:Radi$\breve{c}$ J. (Ed.), Proceedings of the International Conference on Bridges, Dubrovnik, Croatia, 351–358.

\bibitem[{Schewe(2009)}]{schewe2009} Schewe, G., 2009. Reynolds-number-effects in flow around a rectangular cylinder with aspect ratio1:5. In: Proceedings of the Fifth European and African Conference on Wind Engineering, Florence, Italy.

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{ \bibitem[{Yu et~al.(2013)}]{yu_2013} Yu, D., Butler K., Kareem, A., Glimm J., Sun J., 2013. Simulation of the Influence of Aspect ratios on the Aerodynamics of rectangular Prisms. Journal of Engineering Mechanics, ASCE, 139, 429--438. }

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\bibitem[{Wei and Kareem(2011)}]{wei} Wei, Z., Kareem, A., 2011. A benchmark study of flow around a rectangular cylinder with aspect ratio 1:5 at Reynolds number 1.E5, In: Proceedings of the thirteenth International Conference on Wind Engineering, Amsterdam, The Netherlands.




Contributed by: Luca Bruno, Maria Vittoria Salvetti — Politecnico di Torino, Università di Pisa

Front Page

Description

Test Case Studies

Evaluation

Best Practice Advice

References


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