Almost every river found in nature are meandering rivers. So to understand the behaviour of the river, it is very important to study the meandering channels and its flow. A uniform flow in an open channel flow is always opposed by the channel boundaries. This resistance to flow depends on many geometric and hydraulic parameters. Generally, in one-dimensional flow analysis, a proper value of roughness coefficient is used to calculate the carrying capacity of the channel. Normally the same value of roughness coefficient is taken for the whole surface and also for all flow depths. For the meandering channels, roughness coefficient varies mainly with the aspect ratio, flow depths, channel slope and sinuosity of the channel. An appropriate value...
Ubiquitous flow bedforms such as ripples in rivers and coastal environments can affect transport con...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...
Flow in meandering channel is quite ubiquitous for natural flow systems such as in rives. Rivers gen...
Almost all the natural channels meander. During uniform flow in an open channel the resistance is de...
Laboratory experimentations concerning stage-discharge and bed shear stress distribution have been c...
Accurate prediction of Manning’s roughness coefficient is essential for the computation of conveyanc...
This research aims at flow in compound channels using physical modelling, are important for understa...
Coefficients of roughness, n are characterized as parameters representing the channel roughness and ...
Accurate prediction of Manning’s roughness coefficient is essential for the computation of conveyanc...
An accurate prediction of roughness coefficient is of substantial importance for river management. T...
An investigation of flow and velocity distribution of a simple meandering channel with rough bed is ...
This Ph.D. research analyses the flow in simple meandering and meandering compound channels of vario...
Flow resistance in open channels determines the average flow velocity in a river, with important imp...
Distribution of flow and velocity in a meandering river is important in river hydraulics to be inves...
Ubiquitous flow bedforms such as ripples in rivers and coastal environments can affect transport con...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...
Flow in meandering channel is quite ubiquitous for natural flow systems such as in rives. Rivers gen...
Almost all the natural channels meander. During uniform flow in an open channel the resistance is de...
Laboratory experimentations concerning stage-discharge and bed shear stress distribution have been c...
Accurate prediction of Manning’s roughness coefficient is essential for the computation of conveyanc...
This research aims at flow in compound channels using physical modelling, are important for understa...
Coefficients of roughness, n are characterized as parameters representing the channel roughness and ...
Accurate prediction of Manning’s roughness coefficient is essential for the computation of conveyanc...
An accurate prediction of roughness coefficient is of substantial importance for river management. T...
An investigation of flow and velocity distribution of a simple meandering channel with rough bed is ...
This Ph.D. research analyses the flow in simple meandering and meandering compound channels of vario...
Flow resistance in open channels determines the average flow velocity in a river, with important imp...
Distribution of flow and velocity in a meandering river is important in river hydraulics to be inves...
Ubiquitous flow bedforms such as ripples in rivers and coastal environments can affect transport con...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...
Estimating Manning’s roughness coefficient ( n ) is one of the essential factors in pr...