Have a personal or library account? Click to login
Assessment of 3D-RANS models for the simulation of topographically forced shallow flows Cover

Assessment of 3D-RANS models for the simulation of topographically forced shallow flows

Open Access
|Jan 2016

References

  1. Adrian, R.J, Marusic, I., 2012. Coherent structures in flow over hydraulic engineering surfaces. Journal of Hydraulic Research, 50, 5, 451–464.10.1080/00221686.2012.729540
  2. Babarutsi, S., Ganoulis, J, Chu, V.H., 1989. Experimental investigation of shallow recirculating flows. Journal of Hydraulic Engineering, 115, 7, 906–924.10.1061/(ASCE)0733-9429(1989)115:7(906)
  3. Brevis, W., 2009. Experimental investigation of the flow hydrodynamics in open channel dead regions. PhD thesis, Universidad de Chile, Santiago.
  4. Brevis, W., Niño, Y., Jirka, G.H., 2011. Integrating cross-correlation and relaxation algorithms for particle tracking velocimetry. Experiments in Fluids, 50, 1, 135–147.10.1007/s00348-010-0907-z
  5. Brevis, W., Garcia-Villalba, M., 2011. Shallow-flow visualization analysis by proper orthogonal decomposition. Journal of Hydraulic Research, 49, 5, 586–594.10.1080/00221686.2011.585012
  6. Brevis, W., Garcia-Villalba, M., Niño, Y., 2014. Experimental and large eddy simulation study of the flow developed by a sequence of lateral obstacles. Environmental Fluid Mechanics, 14, 4, 873–893.10.1007/s10652-013-9328-x
  7. Castro, I.P., Haque, A., 1987. The structure of a turbulent shear layer bounding a separation zone. Journal of Fluid Mechanics, 179, 2, 439–468.10.1017/S0022112087001605
  8. Celik, I., Rodi, W., 1984. Simulation of free-surface effects in turbulent channel flows. Physicochemical Hydrodynamics, 5, 3, 217–227.
  9. Genic, S., Arandjelović, I., Kolendić, P., Jarić, M., Budimir, N., Genić, V., 2011. A review of explicit approximations of Colebrook’s equation. FME Transactions, 39, 2, 67–71.
  10. Gibson, M.M., Launder, B.E., 1978. Ground effects on pressure fluctuations in the atmospheric boundary layer. Journal of Fluid Mechanics, 86, 491–511.10.1017/S0022112078001251
  11. Haaland, S.E., 1983. Simple and explicit formulas for the friction factor in turbulent pipe flow. Journal of Fluid Engineering, 105, 1, 89–90.10.1115/1.3240948
  12. Ishihara, T., Gotoh, T., Kaneda, Y., 2009. Study of high-Reynolds number isotropic turbulence by direct numerical simulation. Annual Review in Fluid Mechanics, 41, 165–180.10.1146/annurev.fluid.010908.165203
  13. Jirka, G.H., 2001. Large scale flow structures and mixing processes in shallow flows. Journal of Hydraulic Research, 39, 6, 567–573.10.1080/00221686.2001.9628285
  14. Kirkgöz, M.S., Ardiclioglu, M., 1997. Velocity profiles of developing and developed open channel flow. Journal of Hydraulic Engineering, 123, 12, 1099–1105.10.1061/(ASCE)0733-9429(1997)123:12(1099)
  15. Launder, B.E., 1989. Second-moment closure and its use in modeling turbulent industrial flows. International Journal of Numerical Methods in Fluids, 9, 963–985.10.1002/fld.1650090806
  16. Launder, B.E., Spalding, D.B., 1972. Lectures in mathematical models of turbulence. Academia Press, London, England.
  17. Nassiri, M., Chu, V.H., Babarutsi, S., 2002. Simulation of horizontal turbulence in shallow recirculating flows. In: Proc. of 15th ASCE Engineering Mechanics Conference. Columbia University, New York, NY.
  18. Nezu, I., Rodi, W., 1985. Experimental study on secondary currents in open channel flow. In: Proc. of 21st IAHR Congress, Melbourne, Australia, 2, pp. 114–119.
  19. Patankar, S.V., 1980. Numerical Heat Transfer and Fluid Flow. McGraw-Hill, New York.
  20. Rhoads, B.L, Sukhodolov, A.N., 2004. Spatial and temporal structure of a shear layer turbulence at a stream confluence. Water Resources Research, 40, W06304, doi: 10.1029/2003WR002811.10.1029/2003WR002811
  21. Roache, P.J., 1994. Quantification of uncertainty in computational fluids Dynamics. Annual Review in Fluid Mechanics, 29, 123–160.10.1146/annurev.fluid.29.1.123
  22. Safarzadeh, A., 2011. Experimental study of turbulent flow pattern around a groyne with various head shapes. PhD thesis. Tarbiat Modares University, Tehran, Iran.
  23. Sarkar, S., Balakrishnan, L., 1990. Application of a Reynolds-stress turbulence model to the compressible shear layer. ICASE Report 90-18-NASA CR182002.10.2514/6.1990-1465
  24. Scarano, F., 2002. Iterative image deformation methods in PIV. Measurement Science and Technology, 13, 1, 1–19.10.1088/0957-0233/13/1/201
  25. Speziale, C.G., Sarkar, S., Gatski, T., 1991. Modelling the pressure strain correlation of turbulence: an invariant dynamical systems approach. Journal of Fluid Mechanics, 227, 245–272.10.1017/S0022112091000101
  26. Talstra, H., Uijttewaal, W.S.J., Stelling, G.S., 2006. Emergence of large scale coherent structures in a shallow separating flow. In: Proc. Int. Conf. Fluvial Hydraulics (River Flow), Taylor and Francis, U.K., pp. 261–269.
  27. Uijtewaal, W.S.J., Booij, R., 2000. Effects of shallowness on the development of free-surface mixing layers. Physics of Fluids, 12, 2, 392–420.10.1063/1.870317
  28. Westerweel, J., Scarano, F., 2005. Universal outlier detection for PIV data. Experiments in Fluids, 39, 6, 1096–1100.10.1007/s00348-005-0016-6
  29. White, B., Nepf, H., 2007. Shear instability and coherent structures in a flow adjacent to a porous layer. Journal of Fluid Mechanics, 593, 1–32.10.1017/S0022112007008415
  30. Wilcox, D.C., 1994. Simulation of transition with a two-equation turbulence model. AIAA Journal, 32, 2, 247–255.10.2514/3.59994
  31. Zigrang, D.J., Sylvester, N.D., 1982. Explicit approximations to the Colebrook’s friction factor. AIChE Journal, 28, 3, 514–515.10.1002/aic.690280323
DOI: https://doi.org/10.1515/johh-2016-0008 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 83 - 90
Submitted on: Dec 17, 2014
|
Accepted on: Nov 11, 2015
|
Published on: Jan 26, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Akbar Safarzadeh, Wernher Brevis, published by Slovak Academy of Sciences, Institute of Hydrology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.