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References in periodicals archive ?
Because the density, viscosity, specific heat, and thermal conductivity of material in the whole computational domain are unified successfully, Navier-Stokes equations could be solved conveniently and efficiently by the finite volume SIMPLE method.
Multi-airfoil Navier-Stokes simulations of turbine rotor-stator interaction, J.
Unfortunately, their strategy only worked for the 3D Navier-Stokes equations when the Laplacian operator A in (2) was replaced by another similar linear operator.
We do this by using a commutator argument, a type of which is described in [6] for the Navier-Stokes equations, for instance.
For accuracy the Navier-Stokes equations instead of simplified Darcy's equations were solved for gaseous flow field.
It is derived from Navier-Stokes equations using renormalization group methods.
decay for weak solutions of the Navier-Stokes equation, Arch.
A note on unsteady, unidirectional flow of an incompressible, inhomogeneous Navier-Stokes fluid, Int.
The derived incompressible Navier-Stokes (N-S) equations are as follows:
It is clear that the experimental set-up needs further improvement and modelling has to include additional thermal convections with [kappa]-[epsilon] Navier-Stokes [8] liquid viscosity calculations besides the calculations of the Lorentz forces.
The first exact solution of the Navier-stokes equation was given by Stokes [5] which is concerned with the flow of a viscous incompressible fluid past an infinite horizontal plate oscillating in its own plane in an infinite mass of stationary fluid.
FLOWCast[TM] solves the Navier-Stokes equations and can produce temperature, velocity and pressure information for a mold filling sequence.