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On the internal boundary layer related wind stress curl and its role in generating shallow lake circulations

   | 13 févr. 2014
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Aanderaa Instruments, 2000. Product Catalogue, Bergen, Norway.Search in Google Scholar

Balek, J., 2006. Hydrological consequences of the climatic changes. J. Hydrol. Hydromech., 54, 4, 357─370.Search in Google Scholar

Charnock, H., 1955. Wind stress on a water surface. Quarterly J. Royal Meteorological Society, 81, 639─640.10.1002/qj.49708135027Search in Google Scholar

Curto, G., Józsa, J., Napoli, E., Krámer, T., Lipari, G., 2006. Large scale circulations in shallow lakes. In: Brocchini, M., Trivellato, F., (Eds.): Vorticity and turbulence effects in fluid structure interactions. WIT Press, Southampton, UK, 83─104.10.2495/978-1-84564-052-1/04Search in Google Scholar

Elliott, W.P., 1958. The growth of the atmospheric internal boundary layer. Trans. Am. Geophys. Union, 39, 1048─1054.10.1029/TR039i006p01048Search in Google Scholar

Hutter, K., 1984. Fundamental equations and approximations. In: Hutter, K., (Ed.): Hydrodynamics of lakes, Courses and Lectures - No. 286, Springer Verlag, Wien - New York, 1─38.10.1007/978-3-7091-2634-9_1Search in Google Scholar

Józsa, J., Milici, B., Napoli, E., 2007. Numerical simulation of internal boundary-layer development and comparison with atmospheric data. Boundary-Layer Meteorology, 123, 159─175.10.1007/s10546-006-9134-9Search in Google Scholar

Józsa, J., Sarkkula, J., Tamsalu, R., 1990. Calibration of modelled shallow lake flow using wind field modification. Proc. VIII. International Conference on Computational Methods in Water Resources, Venice, Italy, 1990, CMP/Springer, 165─170.Search in Google Scholar

Józsa, J., Rákóczi, L., Sarkkula, J., Krámer, T., Kuusisto, M., 1998. Recent development in hydro- and sediment dynamics research of shallow Hungarian Lakes. CD-ROM Proc. 3rd International Conference on Hydro-Science and Engineering, Cottbus, Germany, 1998, The University of Mississippi, Center for Comput. Hydro-Science and Engineering, 1998.Search in Google Scholar

Józsa, J., Sarkkula, J., Krámer, T., 1999. Wind induced flow in the pelagic zones of Lake Neusiedl. CD-ROM Proc. XXVIII. IAHR Congress, Graz, Austria, 22-27 August, 1999, Technical University Graz.Search in Google Scholar

Krámer, T., 2007. Solution-adaptive 2D modelling of windinduced lake circulation. Ph.D. thesis, Budapest University of Technology and Economics, Hungary.Search in Google Scholar

Krámer, T., Józsa, J., Sarkkula, J., 2000. Modelling of a coastal wetland for restoration planning. CD-ROM Proc. International Symposium on Restoration of Lakes and Wetlands, Bangalore, India.Search in Google Scholar

Laval, B., Imberger, J., Hodges, B.R., Stocker, R., 2003. Modeling circulation in lakes: Spatial and temporal variations. Limnol. Oceanogr., 48, 3, 983─994.10.4319/lo.2003.48.3.0983Search in Google Scholar

Podsetchine, V., Schernewski, G., 1999. The influence of spatial wind inhomogeneity on flow patterns in a small lake. Water Research, 33, 15, 3348─3356.10.1016/S0043-1354(99)00035-4Search in Google Scholar

Rao, A.R., Kumar, B., 2008. Estimating bed shear from velocity profile. J. Hydrol. Hydromech., 56, 1, 14─22.Search in Google Scholar

Rueda, F.J., Schladow, G., Monismith, S.G., Tacey, M.T., 2005. On the effects of topography on wind and the generation of currents in a large multi-basin lake. Hydrobiologia, 532, 139─151.10.1007/s10750-004-9522-4Search in Google Scholar

Sarkkula, J., Józsa, J., Bakonyi, P., 1991. Measuring and modelling wind induced flow in shallow lakes. In: Hydrology of Natural and Manmade Lakes, Proc. Vienna Symposium, IAHS Publication 206, 219─226.Search in Google Scholar

Savelyev, S.A., Taylor, P.A., 2001. Notes on internal boundarylayer height formula. Boundary-Layer Meteorology, 101, 293─301.10.1023/A:1019208631216Search in Google Scholar

Schwab, D., Beletsky, D., 2003. Relative effects of wind stress curl, topography, and stratification on large-scale circulation in Lake Michigan. J. Geophys. Res., 108, C2, 3044─3053.10.1029/2001JC001066Search in Google Scholar

Shanahan, P., Harleman, D.R.F., Somlyódy, L., 1986. Windinduced Water Motion. In: van Straten, G., Somlyódy, L., (Eds.): Modeling and Managing Shallow Lake Eutrophication, Springer, Berlin, 204─255.10.1007/978-3-642-82707-5_9Search in Google Scholar

Simons, T.J., 1980. Circulation models of lakes and inland seas. Canadian Bulletin of Fisheries and Aquatic Sciences, 203, Ottawa, Canada.Search in Google Scholar

Stull, R.B., 1991. An introduction to boundary layer meteorology. Kluwer Publishing.Search in Google Scholar

Taylor, P.A., Lee, R.J., 1984. Simple guidelines for estimating wind speed variations due to small scale topographic features. Climatologic Bulletin, Canadian Meteorological and Oceanographic Society, 18, 2, 3─32.Search in Google Scholar

Walmsley, J.L., 1989. Internal boundary layer height formulae - a comparison with atmospheric data. Boundary-Layer Meteorology, 47, 251─262.10.1007/978-94-009-0975-5_15Search in Google Scholar

Wu, J., 1982. Wind-stress coefficients over sea surface from breeze to hurricane. J. Geophys. Res., 87, C12, 9704─9706.10.1029/JC087iC12p09704Search in Google Scholar

Young, I.R., Verhagen L.A., 1996. The growth of fetch limited waves in water of finite depth. Part 1. Total energy and peak frequency. Coastal Eng., 29, 47─78.10.1016/S0378-3839(96)00006-3Search in Google Scholar

ISSN:
0042-790X
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Engineering, Introductions and Overviews, other