Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence

Confluences play a major role in the dynamics of networks of natural and man-made open channels, and field measurements on river confluences reveal that discordance in bed elevation is common. Studies of schematized confluences with a step at the interface between the tributary and the main channel...

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Main Authors: Pedro Xavier Ramos, Laurent Schindfessel, João Pedro Pêgo, Tom De Mulder
Format: Article
Language:English
Published: Elsevier 2019-09-01
Series:Water Science and Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S167423701930081X
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author Pedro Xavier Ramos
Laurent Schindfessel
João Pedro Pêgo
Tom De Mulder
author_facet Pedro Xavier Ramos
Laurent Schindfessel
João Pedro Pêgo
Tom De Mulder
author_sort Pedro Xavier Ramos
collection DOAJ
description Confluences play a major role in the dynamics of networks of natural and man-made open channels, and field measurements on river confluences reveal that discordance in bed elevation is common. Studies of schematized confluences with a step at the interface between the tributary and the main channel bed reveal that bed elevation discordance is an important additional control for the confluence hydrodynamics. This study aimed to improve understanding of the influence of bed elevation discordance on the flow patterns and head losses in a right-angled confluence of an open channel with rectangular cross-sections. A large eddy simulation (LES)-based numerical model was set up and validated with experiments by others. Four configurations with different bed discordance ratios were investigated. The results confirm that, with increasing bed elevation discordance, the tributary streamlines at the confluence interface deviate less from the geometrical confluence angle, the extent of the recirculation zone (RZ) gets smaller, the ratio of the water depth upstream to that downstream of the confluence decreases, and the water level depression reduces. The bed elevation discordance also leads to the development of a large-scale structure in the lee of the step. Despite the appearance of the large-scale structure, the reduced extent of the RZ and associated changes in flow deflection/contraction reduce total head losses experienced by the main channel with an increase of the bed discordance ratio. It turns out that bed elevation discordance converts the lateral momentum from the tributary to streamwise momentum in the main channel more efficiently. Keywords: Open channel confluence, Bed elevation discordance, Three-dimensional numerical modelling, Large eddy simulation, Recirculation zone
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spelling doaj.art-3c6fc4ab24e8405e9fcc82bbff27bc8c2022-12-21T18:23:56ZengElsevierWater Science and Engineering1674-23702019-09-01123235243Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluencePedro Xavier Ramos0Laurent Schindfessel1João Pedro Pêgo2Tom De Mulder3Department of Civil Engineering, Ghent University, Ghent 9000, Belgium; Corresponding author.Department of Civil Engineering, Ghent University, Ghent 9000, BelgiumFaculty of Engineering, University of Porto, Porto 4200-465, PortugalDepartment of Civil Engineering, Ghent University, Ghent 9000, BelgiumConfluences play a major role in the dynamics of networks of natural and man-made open channels, and field measurements on river confluences reveal that discordance in bed elevation is common. Studies of schematized confluences with a step at the interface between the tributary and the main channel bed reveal that bed elevation discordance is an important additional control for the confluence hydrodynamics. This study aimed to improve understanding of the influence of bed elevation discordance on the flow patterns and head losses in a right-angled confluence of an open channel with rectangular cross-sections. A large eddy simulation (LES)-based numerical model was set up and validated with experiments by others. Four configurations with different bed discordance ratios were investigated. The results confirm that, with increasing bed elevation discordance, the tributary streamlines at the confluence interface deviate less from the geometrical confluence angle, the extent of the recirculation zone (RZ) gets smaller, the ratio of the water depth upstream to that downstream of the confluence decreases, and the water level depression reduces. The bed elevation discordance also leads to the development of a large-scale structure in the lee of the step. Despite the appearance of the large-scale structure, the reduced extent of the RZ and associated changes in flow deflection/contraction reduce total head losses experienced by the main channel with an increase of the bed discordance ratio. It turns out that bed elevation discordance converts the lateral momentum from the tributary to streamwise momentum in the main channel more efficiently. Keywords: Open channel confluence, Bed elevation discordance, Three-dimensional numerical modelling, Large eddy simulation, Recirculation zonehttp://www.sciencedirect.com/science/article/pii/S167423701930081X
spellingShingle Pedro Xavier Ramos
Laurent Schindfessel
João Pedro Pêgo
Tom De Mulder
Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
Water Science and Engineering
title Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
title_full Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
title_fullStr Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
title_full_unstemmed Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
title_short Influence of bed elevation discordance on flow patterns and head losses in an open-channel confluence
title_sort influence of bed elevation discordance on flow patterns and head losses in an open channel confluence
url http://www.sciencedirect.com/science/article/pii/S167423701930081X
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