. "Numerical Calculations of Ship Stern Flows at Full-Scale Reynolds Numbers." Twenty-First Symposium on Naval Hydrodynamics. Washington, DC: The National Academies Press, 1997.
The following HTML text is provided to enhance online
readability. Many aspects of typography translate only awkwardly to HTML.
Please use the page image
as the authoritative form to ensure accuracy.
Twenty-First Symposium on NAVAL HYDRODYNAMICS
[6] Hoekstra M., Raven H.C.—Ship Boundary Layer and Wake Calculation with a Parabolised Navier-Stokes SolutionSystem. —4th International Conference on Numerical Ship Hydrodynamics”, Washington D.C., 1985.
[7] Hoekstra M.—Recent Developments ina Ship Stern Flow Prediction Code.— 5th International Conference on Numerical Ship Hydrodynamics, Hiroshima, September 1989.
[8] Eça L.—Numerical Solution of the Parabolised Navier-Stokes Equations for Incompressible Tip Vortex Flows.—PhD Thesis, Instituto Superior Técnico, Lisbon, March 1993.
[9] Rubin S.G., Tannehill J.C.—Parabolized/Reduced Navier-Stokes Computational Techniques.—Annual Review of Fluid Mechanics, Vol. 24, 1992, pp. 117–144.
[10] Cebeci T., Smith A.M.O.—Analysis of Turbulent Boundary Layers.—Academic Press. November 1984.
[11] Eça L, Hoekstra M.—Discretization ofthe Parabolised Navier-Stokes Equations.— First European Computational Fluid Dynamics Conference, Brussels, September 1992.
[12] Hoekstra M.—Generation of Initial VelocityProfiles for Boundary Layer Calculations— Marin Report No 50028–1-SR, March 1980.
[13] Raven H.C.—Berekening van de potentiaal-stroming rond draagvlakken met het programma DAWSON—Marin Report No 50501–1-RD, May 1985.
[14] Rubin S.G.—Incompressible Navier-Stokesand Parabolised Navier-Stokes Formulations and Computational Techniques.— Computational Methods in Viscous Flow, Vol. 3 in the series Recent Advances in Numerical Methods in Fluids (ed. Habashi) Pineridge Press, 1984.
[15] Eça L.—Grid Generation with Systemsof Partial Differential Equations (in Portuguese), IV National Meeting of Computational Mechanics, Lisbon, April 1995.
[16] Thompson J.F.—Composite Grid Generation Code for General 3-D Regions—the EAGLE code—AIAA Journal, Vol. 26, March 1988, pp. 271–272.
[17] Thompson J.F.—A General Three-Dimensional Elliptic Grid Generation System on a Composite BlockStructure.— Computer Methods in Applied Mechanics and Engineering, Vol. 64, 1987, pp. 377–411.
[18] Sörenson R.L.—Grid Generation by EllipticPartial Differential Equations for a Tri-Element Augmentor-Wing Airfoil —Numerical Grid Generation, ed. Thompson J.F., North-Holland, 1982.
[19] Vinokur M.—On One-Dimensional Stretching Functions for Finite-Difference Calculations.—Journal of Computational Physics, Vol. 50, 1983, pp. 215–234.