Morphodynamic changes in a channel confluence due to local tributary widening
Marcelo Leite Ribeiro
Abstract
Marcelo Leite Ribeiro
Abstract
The morphodynamic changes in a confluence zone due to local tributary widening were experimentally investigated in a set-up representative of regulated piedmont confluences. A reference configuration with a constant tributary width of 0.15 m is compared to a configuration where the tributary is widened to 0.30 m over its last 0.45 m. The main channel is 0.5 m wide and the confluence angle is 90°. Comparison is made for a discharge ratio Qt/Qm = 0.11. Tests were run until equilibrium with a constant solid discharge of poorly-sorted material from the tributary. The paper presents detailed data on the morphology and on the three-dimensional flow velocity field at the confluence zone. Results revealed that the local widening of the tributary creates a pronounced heterogeneity in the flow velocities and flow depths, without having any adverse effects on flood safety in the confluence zone. Although the local tributary widening allows a reduction in the confluence angle, it locally amplifies the hydro-morpho-sedimentary processes in the confluence zone.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The morphodynamic changes in a confluence zone due to local tributary widening were experimentally investigated in a set-up representative of regulated piedmont confluences. A reference configuration with a constant tributary width of 0.15 m is compared to a configuration where the tributary is widened to 0.30 m over its last 0.45 m. The main channel is 0.5 m wide and the confluence angle is 90°. Comparison is made for a discharge ratio Qt/Qm = 0.11. Tests were run until equilibrium with a constant solid discharge of poorly-sorted material from the tributary. The paper presents detailed data on the morphology and on the three-dimensional flow velocity field at the confluence zone. Results revealed that the local widening of the tributary creates a pronounced heterogeneity in the flow velocities and flow depths, without having any adverse effects on flood safety in the confluence zone. Although the local tributary widening allows a reduction in the confluence angle, it locally amplifies the hydro-morpho-sedimentary processes in the confluence zone.
Key concepts: Confluence, Tributary, Geology, Hydrology (agriculture), Flow (mathematics), Channel (broadcasting), Geomorphology, Geometry