Have a personal or library account? Click to login
Influence of boulder array on the near-bed turbulent flow characteristics in a gravel bed stream - An experimental investigation Cover

Influence of boulder array on the near-bed turbulent flow characteristics in a gravel bed stream - An experimental investigation

Open Access
|Aug 2023

References

  1. Aberle, J., Koll, K., Dittrich, A., 2008. Form induced stresses over rough gravel-beds. Acta Geophys., 56, 3, 584–600.
  2. Cao, H., Ye, C., Yan, X.-F., Liu, X.-N., Wang, X.-K., 2020. Experimental investigation of turbulent flows through a boulder array placed on a permeable bed. Water Supply, 20, 4, 1281–1293.
  3. Canovaro, F., Paris, E., Solari, L., 2007. Effects of macro-scale bed roughness geometry on flow resistance. Water Resour. Res., 43, 10, W10414.
  4. Dey, S., Sarkar, S., Bose, S. K., Tait, S., Castro-Orgaz, O., 2011. Wall-wake flows downstream of a sphere placed on a plane rough wall. J. Hydraul. Eng., 137, 10, 1173–1189.
  5. Dey, S., Das, R., 2012. Gravel-bed hydrodynamics: Double-averaging approach, J. Hydraul. Eng., 138, 8, 707–725.
  6. Fang, H. W., Liu, Y., Stoesser, T., 2017. Influence of boulder concentration on turbulence and sediment transport in open-channel flow over submerged boulders. J. Geophys. Res. Earth Surf., 122, 2392–2410.
  7. Ferro, V., 2003. ADV measurements of velocity distributions in a gravel-bed flume. Earth Surf. Process. Landf., 28, 7, 707–722.
  8. Goring, D., Nikora, V., 2002. Despiking acoustic Doppler velocimeter data. J. Hydraul. Eng., 128, 1, 117–126.
  9. Hajimirzaie, S.M., Tsakiris, A.G., Buchholz, J.H., Papanicolaou, A.N., 2014. Flow characteristics around a wall-mounted spherical obstacle in a thin boundary layer. Exp. Fluids, 55, 6, 1–14.
  10. Lacey, R.W.J., Roy, A.G., 2008. Fine-scale characterization of the turbulent shear layer of an instream pebble cluster. J. Hydraul. Eng., 134, 7, 925–936.
  11. Lamb, M.P., Dietrich, W.E., Venditti, J.G., 2008. Is the critical Shields stress for incipient sediment motion dependent on channel-bed slope? J. Geophys. Res., 113, F02008.
  12. Manes, C., Pokrajac, D., McEwan, I., Nikora, V., 2009. Turbulence structure of open channel flows over permeable and impermeable beds: A comparative study. Phys. Fluids, 21, 12, 125109.
  13. Mignot, E., Barthelemy, E., Hurther, D., 2008. Double-averaging analysis and local flow characterization of near-bed turbulence in gravel-bed channel flows. J. Fluid. Mech., 618, 279–303.
  14. Nezu, I., Nakagawa, H., 1993. Turbulence in Open-Channel Flows. Balkema, Rotterdam, Netherlands.
  15. Nikora, V., Goring, D., McEwan, I., Griffiths, G., 2001. Spatially averaged open-channel flow over rough bed. J. Hydraul. Eng., 127, 2, 123–133.
  16. Nikora, V., McEwan, I., McLean, S., Coleman, S., Pokrajac, D., Walters, R., 2007. Double-averaging concept for rough-bed open-channel and overland flows: Theoretical background. J. Hydraul. Eng., 133, 8, 873–883.
  17. Ozgoren, M., Okbaz, A., Dogan, S., Sahin, B., Akilli, H., 2013. Investigation of flow characteristics around a sphere placed in a boundary layer over a flat plate. Exp. Therm. Fluid Sci., 44, 62–74.
  18. Papanicolaou, A.N., Diplas, P., Dancey, C.L., Balakrishnan, M., 2001. Surface roughness effects in near-bed turbulence: Implications to sediment entrainment. J. Eng. Mech., 127, 3, 211–218.
  19. Papanicolaou, A.N., Kramer, C.M., Tsakiris, A.G., Stoesser, T., Bomminayuni, S., Chen, Z., 2012. Effects of a fully submerged boulder within a boulder array on the mean and turbulent flow fields: Implications to bedload transport. Acta Geophys., 60, 6, 1502–1546.
  20. Pope, S.B., 2000. Turbulent Flows. Cambridge University Press.
  21. Recking, A., 2009. Theoretical development on the effects of changing flow hydraulics on incipient bed load motion. Water Resour. Res., 45, W04401.
  22. Sarkar, S., Dey, S., 2010. Double-averaging turbulence characteristics in flows over a gravel-bed. J. Hydraul. Res., 48, 6, 801–809.
  23. Strom, K.B., Papanicolaou, A.N., 2007. ADV measurements around a cluster microform in a shallow mountain stream. J. Hydraul. Eng., 133, 12, 1379–1389.
  24. Tsakiris, A.G., Papanicolaou, A.T., Hajimirzaie, S.M., Buchholz, J.H., 2014. Influence of collective boulder array on the surrounding time-averaged and turbulent flow fields. Journal of Mountain Science, 11, 6, 1420–1428.
  25. Tsutsui, T., 2008. Flow around a sphere in a plane turbulent boundary layer. Journal of Wind Engineering and Industrial Aerodynamics, 96, 6–7, 779–792.
  26. Uhlmann, M., 2008. Interface-resolved direct numerical simulation of vertical particulate channel flow in the turbulent regime. Phys. Fluids, 20, 5, 053305.
  27. Xu, Z., Zhang, C., Qiang, Y., Wang, X., Yan, X., 2020. Hydrodynamics and bed morphological characteristics around a boulder in a gravel stream. Water Supply, 20, 2, 395–407.
DOI: https://doi.org/10.2478/johh-2023-0016 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 293 - 304
Submitted on: Oct 17, 2022
Accepted on: Apr 3, 2023
Published on: Aug 10, 2023
Published by: Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Akash Datta, Ratul Das, Mrinmoy Majumder, published by Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.