Cite

Andersson, A.G., Andreasson, P., Lundström, T.S., 2013. CFD-modeling and validation of free surface flow during spilling of reservoir in down-scale model. Engineering Applications of Computational Fluid Mechanics, 7, 1, 159–167.10.1080/19942060.2013.11015461Search in Google Scholar

Dargahi, B., 2004. Three-dimensional flow modeling and sediment transport in the River Klaralven. Earth Surface Processes and Landforms, 29, 7, 821-852.10.1002/esp.1071Search in Google Scholar

Demuren, A.O., 1993. A numerical model for flow in meandering channels with natural bed topography. Water Resources Research, 29, 4, 1269–1277.10.1029/92WR02907Search in Google Scholar

Dubnyak, S., Timchenko, V., 2000. Ecological role of hydrodynamic processes in the Dnieper reservoirs. Ecological Engineering, 16, 1, 181–188.10.1016/S0925-8574(00)00103-8Search in Google Scholar

Falconer, I.R., 1999. An overview of problems caused by toxic blue-green algae (Cyanobacteria) in drinking and recreational water. Environmental Toxicology, 14, 1, 5–12.10.1002/(SICI)1522-7278(199902)14:1<5::AID-TOX3>3.0.CO;2-0Search in Google Scholar

Fischer-Antze, T., 2005. Assessing river bed changes by morphological and numerical analysis. Ph.D. Thesis. Vienna University of Technology, Vienna, 179 p.Search in Google Scholar

Gambit User`s Guide 2.2.30, 2004.Search in Google Scholar

Kennedy, M.G., Ahlfeld, D.P., Schmidt, D.P., Tobiason, J.E., 2006. Three-dimensional modeling for estimation of hydraulic retention time in a reservoir. Journal of Environmental Engineering, 132, 9, 976–984.10.1061/(ASCE)0733-9372(2006)132:9(976)Search in Google Scholar

Kriš, J., Hadi, G.A., 2010. Improvement performance of Al-Wathba settling tank by a computational fluid dynamics model. J. Hydrol. Hydromech., 58, 3, 201–210.10.2478/v10098-010-0019-8Search in Google Scholar

Meselhe, E.A., Sotiropoulos, F., Patel, V.C., 1995. Three-dimensional numerical model for open-channels. In: Proceedings of the ASCE Waterpower '95, San Francisco, CA, USA, 3, 2315–2324.Search in Google Scholar

Nichols, R.H., 2008. Turbulence Models and Their Application to Complex Flows. University of Alabama, Birmingham.Search in Google Scholar

Patankar, S.V., 1980. Numerical Heat Transfer and Fluid Flow. Hemisphere Publishing Corporation, Washington, pp. 126–134.Search in Google Scholar

Sándor, B., 2009. PhD thesis book: Three-dimensional analysis of river hydrodynamics and morphology, Budapest.Search in Google Scholar

Shepherd, J.F., Johnson, C.R., 2008. Hexahedral mesh generation constraints. Engineering with Computers, 24, 3, 195–213.10.1007/s00366-008-0091-4Search in Google Scholar

Simons, T.J., 1974. Verification of numerical models of Lake Ontario, Part I, Circulation in spring and early summer, Journal of Physical Oceanography, 4, 4, 507–523.10.1175/1520-0485(1974)004<0507:VONMOL>2.0.CO;2Search in Google Scholar

Sinha, S.K., Sotiropoulos, F., Odgaard, A.J., 1998. Three-dimensional numerical model for flow through natural rivers, Journal of Hydraulic Engineering, 124, 1, 13–24.10.1061/(ASCE)0733-9429(1998)124:1(13)Search in Google Scholar

Ünes, F., Varcin, H., 2015. Investigation of seasonal thermal flow in a real dam reservoir using 3-D numerical modeling. Journal of Hydrology and Hydromechanics, 63, 1, 38–46.10.1515/johh-2015-0007Search in Google Scholar

Versteeg, H.K., Malalasekera, W., 1995. An Introduction to Computational Fluid Dynamics. The Finite Volume Method. Longman Group Ltd., Loughborough, United Kingdom.Search in Google Scholar

Wilcox, D.C., 1998. Turbulence modeling for CFD. DCW Industries Inc., La Canada, CA.Search in Google Scholar

Wu, W.M., Rodi, W.G., Thomas, W., 2000. 3D numerical modeling of flow and sediment transport in open channels. Journal of Hydraulic Engineering, 126, 1, 4–15.10.1061/(ASCE)0733-9429(2000)126:1(4)Search in Google Scholar

Wüest, A., Lorke, A., 2003. Small-scale hydrodynamics in lakes. Annual Review of Fluid Mechanics, 35, 373–412.10.1146/annurev.fluid.35.101101.161220Search in Google Scholar

Ziemińska-Stolarska, A., Zbiciński, I., Imbierowicz, M., Skrzypski, J., 2013. Waterpraxis as a tool supporting protection of water in the Sulejow. Desalination and Water Treatment, 51, 1–13.10.1080/19443994.2013.768043Search in Google Scholar

Zieminska-Stolarska, A., 2014. Analysis of the impact of changes in the flux of biogenic substances on water eutrophication in the Sulejów Reservoir. PhD Thesis. University of Technology, Lodz.Search in Google Scholar

Zinke, P., Reidar Bøe Olsen, N., Bogen J., Rüther, N., 2010. 3D modelling of the flow distribution in the delta of Lake Øyeren, Norway. Hydrology Research, 41, 2, 92–103.10.2166/nh.2010.018Search in Google Scholar

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