## Numerical Methods in Laminar and Turbulent Flow, Volume 9 |

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### Contents

RREEACE | 865 |

B P LEONARD A P LOCK and M K MacVEAN 1 | 1412 |

S C CHANG X Y WANG C Y CHOW and 82 | 1481 |

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### Common terms and phrases

algorithm applied approximation average axial boundary conditions boundary layer bubble calculated cell channel coefficient constant continuity equation control volume convection convergence coordinates defined denotes density developed diffusion dimensional dimensionless direction discrete distribution effects experimental finite difference finite element finite element method finite volume finite volume method flow field fluid flow flux formulation free surface function geometry governing equations grid points heat incompressible inlet interaction interface interpolation iteration laminar length linear liquid matrix mesh multigrid Navier-Stokes equations nodes nozzle Numerical Methods obtained oscillation parameters particle phase Poiseuille flow Poisson's equations predicted present problem Rayleigh-Taylor instability refinement region Reynolds number scheme seepage face shear stress shown in Figure solution solved solver step stream function structure technique temperature tetrahedra three-dimensional transport equation triangles turbulence model turbulent flow two-dimensional unsteady unstructured grid upstream upwind variables vector velocity profile viscosity vortex shedding vortices wall wave