Numerical prediction of forces for turbulent flow around a ship rudder

Loading...
Thumbnail Image

Date

Journal Title

Journal ISSN

Volume Title

Publisher

IAEA

DOI

Abstract

The three dimensional Navier Stokes equations with the standard k-epsilon turbulence model are solved for incompressible turbulent flows around the ship rudder placed in a uniform flow. The solution was obtained using second order high-resolution advection scheme on an unstructured grid. A wall function is used for realizing the no slip condition at walls. Computations were performed on a rudder at two different Reynolds numbers with angle of attack ranging from 0 to 26 degrees. The present results are compared as CFD-Experimental and CFD-CFD in the form of lift and drag coefficients for different degrees of deflection and are in good agreement with the experimental measurements and with the other author's computational results. The calculated stall angles and maximum lift at stall angles are slightly smaller as compared to experimental results. (author)

Citation

Rafi, H., Raza, A., Bilal, S., Zahir, S., & Khan, M. A. (2004). Numerical prediction of forces for turbulent flow around a ship rudder. In Proceedings of international Bhurban conference on applied sciences and technology v. 1.

Endorsement

Review

Supplemented By

Referenced By