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Fluid dynamics --- Transition flow --- Turbulence --- Congresses --- Congresses. --- Fluid dynamics - Congresses --- Transition flow - Congresses --- Turbulence - Congresses
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Turbulence --- Congresses --- Congrès --- Congresses. --- 532.517.4 --- -Flow, Turbulent --- Turbulent flow --- Fluid dynamics --- -Turbulent flow --- 532.517.4 Turbulent flow --- -532.517.4 Turbulent flow --- Flow, Turbulent --- Congrès --- Turbulence - Congresses. --- Turbulence - Congresses
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Mixing --- Turbulence --- Congresses --- Congrès --- 532.5 --- Liquid motion. Hydrodynamics --- 532.5 Liquid motion. Hydrodynamics --- Congrès --- Mixing - Congresses --- Turbulence - Congresses
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Turbulence --- Jets --- Plumes (Fluid dynamics) --- Congresses --- Fluid dynamics --- Turbulence - Congresses --- Jets - Fluid dynamics - Congresses --- Plumes (Fluid dynamics) - Congresses
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Marine Turbulence
Colloques --- Colloquia --- Mechanica --- Mécanique --- Oceanografie --- Océanographie --- Issue --- Turbulence --- Oceanography --- Congresses --- Hydrodynamique. --- Hydrodynamics. --- Conferences - Meetings --- Oceanography. --- Turbulence. --- Turbulence - Congresses --- Oceanography - Congresses --- Océanographie. --- Ocean bottom. --- Fonds marins.
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Global differential geometry --- Nonlinear theories --- Shear flow --- Turbulence --- Théories non linéaires --- Congresses --- Congrès --- Théories non linéaires --- Congrès --- Shear flow - Congresses --- Turbulence - Congresses --- Nonlinear theories - Congresses --- Global differential geometry - Congresses
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Mathematical physics --- Fluid mechanics --- Turbulence --- Navier-Stokes equations --- Congresses --- 532 --- Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- Congresses. --- 532 Fluid mechanics in general. Mechanics of liquids (hydromechanics) --- Fluides, Mécanique des --- Fluides, Mécanique des. --- Fluides, Mécanique des --- Fluid mechanics. --- Turbulence. --- Turbulence - Congresses --- Navier-Stokes equations - Congresses --- Navier-stokes, equations
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Bottom Turbulence
Colloques --- Colloquia --- Mechanica --- Mécanique --- Oceanografie --- Océanographie --- Turbulence --- Turbulent boundary layer --- Ocean bottom --- Congresses --- -Turbulence --- -Turbulent boundary layer --- -Boundary layer --- Flow, Turbulent --- Turbulent flow --- Fluid dynamics --- Bottom of the ocean --- Floor of the ocean --- Ocean floor --- Sea bed --- Sea floor --- Seafloor --- Seabed --- Subsoil of the ocean floor --- Submarine topography --- Congresses. --- -Congresses --- Turbulence - Congresses --- Turbulent boundary layer - Congresses --- Ocean bottom - Congresses
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This volume contains the proceedings of the 19th International Liège Colloquium on Ocean Hydrodynamics, the programme of which focused on the relationships between small-scale mixing and large-scale features, transports and processes. The presentation of papers on various methods of parameterization of small-scale turbulent mixing for numerical ocean models was particularly encouraged and this resulted in more than a third of the papers presented at the Colloquium dealing in one way or another with the parameterization problems; many of these papers demonstrate the direct results of modelling
Issue --- Oceanic mixing --- Ocean circulation --- Turbulence --- Congresses --- Circulation, Ocean --- Oceanography --- Mixing, Oceanic --- Fluides, Mécanique des --- Fluid mechanics --- Physical oceanography --- Conferences - Meetings --- Fluides, Mécanique des. --- Hydrodynamique --- Modèles mathématiques --- Modèles mathématiques --- Mécanique des fluides. --- Oceanic mixing - Congresses --- Ocean circulation - Congresses --- Turbulence - Congresses --- Mers et oceans --- Mécanique des fluides.
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The study of wall-bounded turbulent flows is of considerable interest from both scientific and practical view points. As such it has attracted a great deal of research over the last 100 years. Much research has concentrated on flows over smooth walls since these are simpler from experimental, numerical and theoretical standpoints. The flow over rough walls has still received considerable attention but progress has necessarily been slower. Perhaps the most essential problem (certainly from a practical point of view) is to be able to predict the skin-friction drag acting on a plate (or a body) given a certain known roughness characteristic of the surface. Unfortunately this has proved to be very difficult since even the simplest rough surfaces can be characterised by a number of different parameters and we still cannot directly connect these to the fluid dynamic drag in a given situation. Various theories and models have been proposed in order to make progress but there is still some disagreement in the community as to the correct understanding of these important flows. The IUTAM Symposium on the Physics of Wall-bounded Flows on Rough Walls was held in Clare College, Cambridge from the 7th - 9th July 2009 in order to bring together various expert researchers in the field to try and resolve some of these disagreements and to develop a consensus on the most fruitful directions of future research.
Turbulence -- Congresses. --- Turbulence -- Mathematical models -- Congresses. --- Turbulent boundary layer -- Congresses. --- Unsteady flow (Fluid dynamics) -- Congresses. --- Turbulence --- Fluid dynamics --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Engineering. --- Physics. --- Fluids. --- Fluid mechanics. --- Engineering Fluid Dynamics. --- Fluid- and Aerodynamics. --- Theoretical, Mathematical and Computational Physics. --- Hydraulic engineering. --- Engineering, Hydraulic --- Engineering --- Fluid mechanics --- Hydraulics --- Shore protection --- Mathematical physics. --- Physical mathematics --- Physics --- Mechanics --- Hydrostatics --- Permeability --- Hydromechanics --- Continuum mechanics --- Mathematics
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