Navier–Stokes equations

Results: 681



#Item
201Turbulence / Partial differential equations / Aerodynamics / Turbulence kinetic energy / Turbulence modeling / Surface layer / Atmospheric model / Navier–Stokes equations / Mixed layer / Fluid dynamics / Physics / Fluid mechanics

Geosci. Model Dev., 8, 69–86, 2015 www.geosci-model-dev.netdoi:gmd © Author(sCC Attribution 3.0 License. Modelling turbulent vertical mixing sensitivity using a 1-D version

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Source URL: www.geosci-model-dev.net

Language: English - Date: 2015-01-22 09:15:09
202Partial differential equations / Physical quantities / Gravity wave / Navier–Stokes equations / Wave / Momentum / Viscosity / Boussinesq approximation / Equations of motion / Physics / Fluid dynamics / Water waves

Experimental determination of radiated internal wave power without pressure field data Frank M. Lee, M. S. Paoletti, Harry L. Swinney, and P. J. Morrison Citation: Physics of Fluids[removed]present) 26, [removed]); doi:

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Source URL: chaos.utexas.edu

Language: English - Date: 2014-04-25 16:00:47
203Physics / Piping / Turbulence / Dynamical systems / Intermittency / Boundary layer / Laminar flow / Navier–Stokes equations / Reynolds number / Fluid dynamics / Aerodynamics / Fluid mechanics

This discussion paper is/has been under review for the journal Nonlinear Processes in Geophysics (NPG). Please refer to the corresponding final paper in NPG if available. Discussion Paper Nonlin. Processes Geophys. Disc

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Source URL: www.nonlin-processes-geophys-discuss.net

Language: English - Date: 2015-03-13 16:01:52
204Physical oceanography / Water waves / Oceanography / Aerodynamics / Pycnocline / Mixed layer / Turbulence kinetic energy / Navier–Stokes equations / Turbulence / Physics / Fluid dynamics / Fluid mechanics

This discussion paper is/has been under review for the journal Nonlinear Processes in Geophysics (NPG). Please refer to the corresponding final paper in NPG if available. Discussion Paper Nonlin. Processes Geophys. Disc

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Source URL: www.nonlin-processes-geophys-discuss.net

Language: English - Date: 2015-03-26 09:22:06
205Vector calculus / Fluid dynamics / Multivariable calculus / Differential geometry / Aerodynamics / Material derivative / Navier–Stokes equations / Covariant derivative / Upper convected time derivative / Calculus / Mathematical analysis / Physics

http://en.wikipedia.org/w/index.php?title=Material_derivative&p

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Source URL: www.nuceng.ca

Language: English - Date: 2015-01-10 20:14:56
206Computational fluid dynamics / Partial differential equations / Aerodynamics / Continuum mechanics / Lattice gas automaton / Lattice Boltzmann methods / Navier–Stokes equations / Cellular automaton / Boltzmann equation / Physics / Fluid dynamics / Computational physics

High Performance Computing II Lecture 34 Topic 6: Cellular Automaton Methods – Continued The Lattice Gas Cellular Automata model of Frisch, Hasslacher and Pomeau was much

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Source URL: www.physics.buffalo.edu

Language: English - Date: 2014-03-25 12:14:08
207Aerodynamics / Computational fluid dynamics / Partial differential equations / Chemical engineering / Vorticity / Navier–Stokes equations / Gas / Combustion / MEMO Model / Physics / Fluid mechanics / Fluid dynamics

Realistic 2D Fire in Real-Time Odd Erik Gundersen [removed] Samuel Rødal [removed]

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Source URL: www.nik.no

Language: English - Date: 2006-12-08 15:10:07
208Physics / Heat transfer / Boundary layer / Turbulence / Navier–Stokes equations / Brian Spalding / Laminar flow / Viscosity / Heat exchanger / Fluid dynamics / Fluid mechanics / Aerodynamics

Ninth Australian Heat and Mass Transfer Conference 2011 Mapping turbulent combustion by Brian Spalding

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Source URL: www.cham.co.uk

Language: English - Date: 2011-11-16 12:31:23
209Aerodynamics / Computational fluid dynamics / Fellows of the Royal Society / Brian Spalding / SIMPLE algorithm / Suhas Patankar / Navier–Stokes equations / Brian Launder / Francis H. Harlow / Fluid mechanics / Fluid dynamics / Dynamics

CHT[removed]Runchal_Final_Jun_08

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Source URL: www.cham.co.uk

Language: English - Date: 2008-06-10 05:11:26
210Partial differential equations / Aerodynamics / Navier–Stokes equations / Nonlinear system / Fluid mechanics / Differential equation / Euler equations / Boltzmann equation / Cellular automaton / Calculus / Physics / Fluid dynamics

T he invention of a totally discrete model for natural phenomena was made by Ulam and von Neumann in the early fifties and was developed to the extent possible at the time. A few years earlier von Neumann had designed t

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Source URL: www.fas.org

Language: English - Date: 2014-05-06 22:26:39
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