River beds frequently exhibit a lateral variation of roughness. For example, in the case of an overflowing river, the main channel has a smoother topography compared to the adjacent floodplains where vegetation and land occupation yield an important hydraulic roughness. The lateral difference in roughness can induce a high lateral velocity gradient within the river cross- section that gives birth to a mixing layer. This mixing layer leads to fluid and momentum transfers between the two adjacent beds. To understand such mix- ing processes in rivers is important for predicting stage-discharge relationships and the velocity distribution within the cross-section. In order to address these issues in the context of a shallow water flow with a wat...
Shallow lateral shear layers forming between flows with different velocities, though essential for m...
[1] Research on lateral exchange of streamwise momentum between parallel flows in open channels has ...
In this paper, the mixing layer between the two incoming flows in a 90 degree, asymmetrical open cha...
River beds frequently exhibit a lateral variation of roughness. For example, in the case of an overf...
River beds frequently exhibit a lateral variation of roughness. For example, in the case of an overf...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Quantifying turbulent fluxes and secondary structures in shallow channel flows is important for pred...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Hydraulic roughness is a key factor in modeling open channel flow. The frictional effects of roughne...
Shallow shear flows play an important role in the transverse transport of mass and momentum in river...
Shallow shear flows play an important role in the transverse transport of mass and momentum in river...
Research on lateral exchange of streamwise momentum between parallel flows in open channels has main...
Research on lateral exchange of streamwise momentum between parallel flows in open channels has main...
[1] Research on lateral exchange of streamwise momentum between parallel flows in open channels has ...
Shallow lateral shear layers forming between flows with different velocities, though essential for m...
[1] Research on lateral exchange of streamwise momentum between parallel flows in open channels has ...
In this paper, the mixing layer between the two incoming flows in a 90 degree, asymmetrical open cha...
River beds frequently exhibit a lateral variation of roughness. For example, in the case of an overf...
River beds frequently exhibit a lateral variation of roughness. For example, in the case of an overf...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Quantifying turbulent fluxes and secondary structures in shallow channel flows is important for pred...
Highly heterogeneous floodplains can give rise to secondary flow structures responsible for the bulk...
Hydraulic roughness is a key factor in modeling open channel flow. The frictional effects of roughne...
Shallow shear flows play an important role in the transverse transport of mass and momentum in river...
Shallow shear flows play an important role in the transverse transport of mass and momentum in river...
Research on lateral exchange of streamwise momentum between parallel flows in open channels has main...
Research on lateral exchange of streamwise momentum between parallel flows in open channels has main...
[1] Research on lateral exchange of streamwise momentum between parallel flows in open channels has ...
Shallow lateral shear layers forming between flows with different velocities, though essential for m...
[1] Research on lateral exchange of streamwise momentum between parallel flows in open channels has ...
In this paper, the mixing layer between the two incoming flows in a 90 degree, asymmetrical open cha...