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Original Articles

Flow field analysis of a pentagonal-shaped bridge deck by unsteady RANS

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Pages 1-16 | Received 05 May 2015, Accepted 20 Sep 2015, Published online: 26 Oct 2015

References

  • Bearman, P. W., & Obasaju, E. D. (1982). An experimental study of pressure fluctuations on fixed and oscillating square-section cylinders. Journal of Fluid Mechanics, 119, 297–321. doi:10.1017/S0022112082001360
  • Blocken, B. (2014). 50 years of computation wind engineering: Past, present and future. Journal of Wind Engineering and Industrial Aerodynamics, 129, 69–102. 2014. 10.1016/j.jweia.2014.03.008
  • Blevins, R. D. (Eds.). (1990). Flow-induced vibration (2nd ed.). Florida, USA: Krieger Publishing Company, Malabar.
  • Bruno, L., & Mancini, G. (2002). Importance of deck details in bridge aerodynamics. Structural Engineering International, 12(4), 289–294. Retrieved from http://www.iabse.org/IABSE/Publications/SEI_Journal/IABSE/publications/SEI_Journal/SEI_Journal.aspxhttp://www.iabse.org/IABSE/Publications/SEI_Journal/IABSE/publications/SEI_Journal/SEI_Journal.aspx doi: 10.2749/101686602777965234
  • Brusiani, F., De Miranda, S., Patruno, L., Ubertini, F., & Vaona, P. (2013). On the evaluation of bridge deck flutter derivatives using RANS turbulence models. Journal of Wind Engineering and Industrial Aerodynamics, 119, 39–47. doi:10.1016/j.jweia.2013.05.002
  • Franke, J., Hellsten, A., Schlünzen, H., & Carissimo, B. (Eds.). (2007). Best practice guideline for the CFD simulation of flows in the urban environment. COST Office Brussels, Belgium. ISBN 3-00-018312-4, 2007.
  • Huang, L., & Liao, H. (2011). Identification of flutter derivatives of bridge deck under multi-frequency vibration. Engineering Applications of Computational Fluid Mechanics, 5(1), 16–25. 2011. doi:10.1080/19942060.2011.11015349
  • Issa, R. I. (1986). Solution of the implicitly discretized fluid flow equations by operator-splitting. Journal of Computational Physics, 62, 40–65. Retrieved from http://www.sciencedirect.com/science/article/pii/0021999186900999
  • Kelkar, K. M., & Patankar, S. V. (1992). Numerical prediction of vortex shedding behind a square cylinder. International Journal for Numerical Methods in Fluids, 14, 327–341. doi:10.1002/fld.1650140306
  • Kubo, Y., Hayashida, K., Noda, T., & Kimura, K. (2008). Mechanism on reduction of aerodynamic forces and suppression of aerodynamic response of a square prism due to separation interface method. In Proceedings of 6th Int. Colloq. On Bluff Body Aerodynamics and Applications, 20–24 July, Milano, Italy, 1–4.
  • Kubo, Y., Hirata, K., & Mikawa, K. (1992). Mechanism of aerodynamic vibrations of shallow bridge girder sections. Journal of Wind Engineering and Industrial Aerodynamics, 42, 1297–1308. Retrieved from http://www.sciencedirect.com/science/article/pii/016761059290138Z
  • Kubo, Y., Yoshida, K., Tuji, E., Kimura, K., & Kato, K. (2007). Development of aerodynamically stable bridge girder cross section for long span bridges. In proceedings of 12th Int. Conf. on Wind Engineering, 1–6 July, Cairns, Australia, pp. 239–246, 2007.
  • Larsen, A., & Wall, A. (2012). Shaping of bridge box girders to avoid vortex shedding response. Journal of Wind Engineering and Industrial Aerodynamics, 104–106, 159–165. doi:10.1016/j.jweia.2012.04.018
  • Mannini, C., Soda, A., & Schewe, G. (2010). Unsteady RANS modelling of flow past a rectangular cylinder: Investigation of Reynolds number effects. Computers and Fluids, 39(9), 1609–1624. doi:10.1016/j.compfluid.2010.05.014
  • Mannini, C., Soda, A., Voß, R., & Schewe, G. (2010). Unsteady RANS simulation of flow around a bridge section. Journal of Wind Engineering and Industrial Aerodynamics, 98(12), 742–753. doi:10.1016/j.jweia.2010.06.010
  • Mannini, C., Weinman, K., Soda, A., & Schewe, G. (2009). Three-dimensional numerical simulation of flow around a 1:5 rectangular cylinder. In C. Borri, G. Augusti, G. Bartoli, & L. Facchini (Eds.), Proceedings of Fifth European and African Conference on Wind Engineering. Florence, Italy: Firenze University Press. 2009.
  • Menter, F. R. (1994). Two-equation eddy-viscosity turbulence models for engineering applications. AIAA Journal, 32(8), 1598–1605. doi:10.2514/3.12149
  • Nakamura, Y., & Nakashima, M. (1986). Vortex excitation of prism with elongated rectangular, H and (Vertical, Dash) cross-sections. Journal of Fluid Mechanics, 163, 149–169. http://dx.doi.org/10.1017/S0022112086002252
  • Nieto, F., Kusano, I., Hernandez, S., & Jurado, J. A. (2010). CFD analysis of the vortex-shedding response of twin-box deck cable-stayed bridge. In Proceedings of 5th Int. Symp. on Computational Wind Engineering, 23–27 May, North carolina, USA, 1–8.
  • Noda, T. (2010). Study on development of narrow width deck section for suspension bridge. PhD dissertation, Graduate school engineering, Kyushu Institute of Technology, Japan, (Japanese).
  • Noda, T., Kubo, Y., Kimura, K., Kato, K., Okubo, K., & Yoshida, K. (2009). The effects of lower flange slope on the aerodynamic stability of a pentagonal cross-section girder. Journal of Civil Engineering (JSCE), 65(3), 797–807 (Japanese).
  • Oberkampf, W. L., & Trucano, T. G. (2002). Verification and validation in computational fluid dynamics. Progress in Aerospace Sciences, 38, 209–272. 10.1016/S0376-0421(02)00005-2
  • Roache, P. J. (1994). Perspective: A method for uniform reporting of grid refinement studies. Journal of Fluids Engineering, 116(3), 405–413. doi:10.1115/1.2910291
  • Roache, P. J. (1998). Verification and validation in computational science and engineering. Albuquerque, New Mexico: Hermosa Publishers.
  • Šarkić, A., Fisch, R., Höffer, R., & Bletzinger, K. (2012). Bridge flutter derivatives based on computed, validated pressure fields. Journal of Wind Engineering and Industrial Aerodynamics, 104–106, 141–151. doi:10.1115/1.2910291
  • Sarwar, M. W., & Ishihara, T. (2010). Numerical study on suppression of vortex-induced vibrations of a box girder bridge section by aerodynamic countermeasures. Journal of Wind Engineering and Industrial Aerodynamics, 98, 701–711. doi:10.1016/j.jweia.2008.02.015
  • Sarwar, M. W., Ishihara, T., Shimada, K., Yamasaki, Y., & Ikeda, T. (2008). Prediction of aerodynamic characteristics of a box girder bridge section using the LES turbulence model. Journal of Wind Engineering and Industrial Aerodynamics, 96, 1895–1911. doi:10.1016/j.jweia.2008.02.015
  • Schewe, G. (2001). Reynolds-number effects in flow around more-or-less bluff bodies. Journal of Wind Engineering and Industrial Aerodynamics, 89, 1267–1289. 10.1016/S0167-6105(01)00158-1
  • Shirai, S., & Ueda, T. (2003). Aerodynamic simulation by CFD of flat box girder of super-long span suspension bridge. Journal of Wind Engineering and Industrial Aerodynamics, 91, 279–290. doi:10.1016/S0167-6105(02)00351-3
  • Sohankar, A., Davidson, L., & Norberg, C. (1995). Numerical simulation of unsteady flow around a square two-dimensional cylinder. In Proceedings of Twelfth Australasian Fluid Mechanics Conference, 10–15 December, Sydney, Australia, 517–520.
  • Sohankar, A., Davidson, L., & Norberg, C. (1998). Low- Reynolds- number flow around a square cylinder at incidence: study of blockage, onset of vortex shedding and outlet boundary condition. International Journal for Numerical Methods in Fluids, 26, 39–56. 10.1002/(SICI)1097-0363(19980115)26:1<39::AID-FLD623>3.0.CO;2-P
  • Sweby, P. K. (1984). High resolution schemes using flux limiters for hyperbolic conservation laws. SIAM Journal on Numerical Analysis, 21, 995–1011. 10.1137/0721062
  • Versteeg, H., & Malalasekera, W. (Eds.). (2007). Chapter 3: An introduction to computational fluid dynamics: The finite volume method. (2nd ed.). London: Pearson.
  • Watanabe, S., & Fumoto, K. (2008). Aerodynamic study of a slotted box girder using computational fluid dynamics. Journal of Wind Engineering and Industrial Aerodynamics, 96, 1885–1894. doi:10.1016/j.jweia.2008.02.056
  • Yoshida, K., Kubo, Y., Tsuji, E., Kimura, K., & Kato, K. (2006). Effects of lower plate slope on the aerodynamic characteristics of a pentagonal cross section bridge deck. Proceedings of 19th National Symposium on Wind Engineering, Japan, 295–300.