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dc.contributor.authorRüther, Nilsnb_NO
dc.date.accessioned2014-12-19T12:31:07Z
dc.date.available2014-12-19T12:31:07Z
dc.date.created2008-02-18nb_NO
dc.date.issued2006nb_NO
dc.identifier123523nb_NO
dc.identifier.isbn82-471-8187-8nb_NO
dc.identifier.urihttp://hdl.handle.net/11250/242072
dc.description.abstractThe present dissertation describes the improvement of a numerical model when predicting sedimentation and erosion processes in fluvial geomorphology. Various algorithms and parameters were implemented in a computational fluid dynamic model for simulation of three-dimensional water flow and coupled sediment transport to gain an insight into the capabilities of the numerical model. Within the scope of the test cases the model simulated suspended load concentrations at a water intake, transient bed deformation in a 90º channel bend, grain sorting processes as well as an unsteady flow regime in a 180º channel bend, transient bed deformation in a sine-shaped meandering channel with occurring bed forms and the free-forming meander evolution of an initially straight channel. All results matched well with the measurements. The results also showed that using computational fluid dynamics for modeling water flow and sediment transport is one step closer of having a universal predictor for processes in fluvial geomorphology. However, there are limitations and some uncertainties in computing the water surface location and alluvial roughness as well as in turbulence modeling. These should be clarified in future investigations.nb_NO
dc.languageengnb_NO
dc.publisherFakultet for ingeniørvitenskap og teknologinb_NO
dc.relation.ispartofseriesDoktoravhandlinger ved NTNU, 1503-8181; 2006:205nb_NO
dc.relation.haspartRüther, N; Singh, J.M; Olsen, N.R.B; Atkinson, E. 3D computation of sediment transport at water intakes. ICE, Procceedings of the Institution of Civil Engineers. 158(WMI): 1-8, 2005.nb_NO
dc.relation.haspartRüther, N; Olsen, N.R.B. Three dimensional modeling of sediment transport in a narrow 90º channel bend. Journal of Hydraulic Engineering. 131(10): 917-920, 2005.nb_NO
dc.relation.haspartRüther, N; Olsen, N.R.B. Modelling free-forming meander evolution in a laboratory channel using three dimensional computational fluid dynamics. Geomorphology. 89(3-4): 308-319, 2007.nb_NO
dc.titleComputational Fluid Dynamics in Fluvial Sedimentation Engineeringnb_NO
dc.typeDoctoral thesisnb_NO
dc.contributor.departmentNorges teknisk-naturvitenskapelige universitet, Fakultet for ingeniørvitenskap og teknologi, Institutt for vann- og miljøteknikknb_NO
dc.description.degreePhD i vann- og miljøteknikknb_NO
dc.description.degreePhD in Hydraulic and Environmental Engineeringen_GB


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