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Open image in new window Fig. 34 Channel flow regime.
Secondly, channel flow quickly converges to an inertial regime.
Finally, a plane channel flow configuration has been considered.
Results for boundary conditions mimicking constant-velocity straight-channel flow, constant-velocity normal-meandering channel flow are compared.
Fiber orientation and velocity statistics were compared with channel flow results in absence of gravity.
The influence of surface topography on channel flow of immiscible liquids is considered in this paper.
The framework is validated against different cases of open channel flow with different boundary conditions.
This approach is succesfully assessed on the stationary and the pulsed plane channel flow configurations.
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This transition from pipe flow to open-channel flow results in a change in passage shape from that of an elliptical tube to that of a canyon.
A two-channel flow system was assembled.
By employing fully developed flow assumptions an analytic solution for steady 2D-channel flow is found.
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