Two-dimensional,two-phase granular sediment transport model with applications to scouring downstream of an apron |
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Authors: | L.O. Amoudry P.L.-F. Liu |
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Affiliation: | 1. School of Civil and Environmental Engineering, Cornell University, Ithaca, NY 14853, USA;2. Institute of Hydrological and Oceanic Sciences, National Central University, Jhongli, Taiwan |
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Abstract: | We present a two-dimensional, two-phase model for non-cohesive sediment transport. This model solves concentration-weighted averaged equations of motion for both fluid and sediment phases. The model accounts for the interphase momentum transfer by considering drag forces. A collisional theory is used to compute the sediment stresses, while a two-equation (k–ε) fluid turbulence closure is implemented. A benchmark sediment transport problem concerning the scouring downstream of an apron is carried out as an example and numerical results agree with existing experimental data. |
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Keywords: | Sediment transport Scour Boundary layer turbulence Numerical modeling Granular flow Two-phase flows |
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