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- W2857369439 abstract "h A new technique has been developed for the solution of the incompressible Navier-Stokes equations. The numerical technique, derived from a pressure substitution method (PSM), overcomes many of the deficiencies of the pressure correction method. This technique allows for the direct solution of the actual pressure in the form of a Poisson equation which is derived from the pressure weighted substitution of the full momentum equations into the continuity equation. Two-dimensional internal flows are computed with this method and the prediction of cascade performance is presented. The extension of the pressure correction method for the solution of three-dimensional flows is also presented. ' E l C2 /L coefficients in turbulence model CP specific heat at constant pressure E turbulent constant dependent on wall roughness fl,f2,fp low-Reynolds number turbulence model coefficients ~~2 'G3 contravariant velocities static enthalpy transformation metrics flux vectors Jacobian of the transformation turbulent kinetic energy turbulent length scale static pressure turbulent Prandtl number Re Reynolds number Re t turbulent Reynolds number, pk2 //LC Presently; Turbopropulsion Laboratory Naval Postgraduate School Monterey, CA 93943 turbulent Reynolds number, py&/p source term (for variable 4) static temperature fluctuating temperature turbulence intensity, i mean velocity in direction xi, (u1,u2,u3) = (u,v,w) fluctuating velocity in direction x i inlet total velocity Cartesian coordinate, (x1,x2,x3) = (x,y,z) non-dimensionalized normal distance, n / ( v / v a,P,7 transformation metrics 6 Kronecker delta i i E dissipation rate of turbulent kinetic energy R von Karman constant, 0.42 P molecular viscosity ' e f f effective viscosity, p + p, t t turbulent viscosity v kinematic viscosity dissipation function scalar variable fluctuating dissipation density of fluid effective diffusion coefficient (for variable 4) coefficients in turbulence model shear stress on the wall transformed coordinates computational domain grid spacing relaxation parameter for pressure equation relaxation parameter for momentum equations" @default.
- W2857369439 created "2018-07-19" @default.
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- W2857369439 date "2008-01-01" @default.
- W2857369439 modified "2023-09-27" @default.
- W2857369439 title "A PRESSURE BASED METHOD FOR TIIG SOLUTION OF VISCOUS INCOMPRESSIBLE TURBOMACHImRY FLOWS" @default.
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