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Figure 2: Graphical representation of the 3-D flow around modified Wigley hull
Re= 10 000; F,= 0.25.
References
Anderson, D. A., Tannehill, J. C., and Pletcher, R. H. (1984). Computational Fluid Mechnics and
Heat Transfer. McGraw-Hill, New York.
Beam, R. M., and Warming, R. F. (1978). An Implicit Factored Scheme for the Compressible
Navier-Stokes Equations. AIAA Journal 16:4,393-402.
Constanceau, M., and Bouard, R. (1977). Experimental Determination of the Main Features of
Viscous Flow in the Wake of a Circular Cylinder in Uniform Translation Steady Flow, Journal qf
Fluid Mechanics, 79,23 1-256.
Fletcher, C. A. J. (1 988). Computatinal Techniques for Fluid Dynamics. Springer-Verlag, Berlin,
Germany.
Hino, T. (1987). Numerical Simulation of a Viscous Flow with a Free Surface around a Ship
Model. Journal of the Society of Naval Architects of Japan 161.
Kloker, M., and Konzelmann, U. (1993). Outflow Boundary Conditions for Spatial Navier-Stokes
Simulations of Transition Boundary Layer. AIAA Journal 31:4.
Pulliam, T. H., and Steger, J. L. (1980). Implicit Finite-Difference Simulations of Three-
Dimensional Compressible Flow. AIAA Journal 18:2, 159-167.
Pulliam, T. H. (1986). Artificial Dissipation Models for the Euler Equation. AIAA Journal 24:12.
193 1-1940.
Rengel, J. E., and Sphaier, S. H. (1999). A Projection Method for Unsteady Navier-Stokes
Equation with Finite Volume Method and Collocated Grid, Hybrid Methods in Heat and Mass
Transfer, 1:4.
Ratcliffe, T. (1 998). Validation of the free surface Reynolds-averaged Navier-Stokes and potential
flow codes - Proceedings, 22" ONR Symposium on Naval Hydrodynamics.
Schlichting, H. (1979). Boundary Layer Theory. McGraw-Hill, New York.
Steger, J. L. (1978). Implicit Finite Difference Simulation of Flow About Arbitrary Two-
Dimensional Geometry. AIAA Journal 16.
Tritton, D. J. (1959). Journal of Fluid Mechanics, 6, 547.
Wanderley, J. B. V., and Levi, C. A. (2000). Simulation of Vortex-Induced Vibrations on a
Circular Cylinder by the Numerical Solution of the Compressible Navier-Stokes Equations.
Workshop on Vortex-Induced Vibrations of Offshore Structures. Ssio Paulo, Brazil.
Wanderley, J. B. V. (2001). An Algorithm for Slightly Compressible Flows. Proceedings of the
20"' International Offshore Mechanics and Arctic Engineering (OMAE) Conference. Rio de
Janeiro. Brazil