Turbulent simulation of open channel flow at low Reynolds number
β Scribed by T.G. Thomas; J.J.R. Williams
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 660 KB
- Volume
- 38
- Category
- Article
- ISSN
- 0017-9310
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π SIMILAR VOLUMES
Large eddy simulation (LES) of compressible periodic channel flow is performed using a fourth-order finite difference scheme for a Reynolds number based on bulk density, bulk velocity and channel half-width equal to 3000. Two configurations are studied: a subsonic case (M 0 = 0.5) that corresponds t
Developing Couette-Poiseuille flows at Re= 5000 are studied using a low Reynolds number ktwo-equation model and a finite element formulation. Mesh-independent solutions are obtained using a standard Galerkin formulation and a Galerkin/least-squares stabilized method. The predictions for the velocity
The present study reports on a set of computer programmable SPH formulations, which are used to simulate transient planar shear flows, and in particular Poiseuille flow and Couette flow with different types of body forces. The flows examined have Reynolds numbers within the range 0.05$50. SPH result