Two-dimensional simulation of unsteady marine propulsor blade flow using dynamic meshing techniques

Author:

Rhee Shin Hyung,Koutsavdis Evangelos

Publisher

Elsevier BV

Subject

General Engineering,General Computer Science

Reference9 articles.

1. Horwich EA. Unsteady response of a two-dimensional hydrofoil subject to high reduced frequency gust loading. MS Thesis, Massachusetts Institute of Technology; 1993.

2. Computation of unsteady viscous marine-propulsor blade flows—Part 1: validation and analysis;Paterson;J Fluids Eng,1997

3. Taylor LK, Busby JA, Jiang M, Arabshahi A, Sreenivas K, Whitfield, DL. Time accurate incompressible Navier–Stokes simulation of the flapping foil experiment. In: Proceedings of the Sixth International Conference on Numerical Ship Hydrodynamics, Iowa City, IA; 1993.

4. Kang DJ, Bae SS, Kim JW. Navier–Stokes simulation of the MIT flapping foil experiment using an unstructured finite volume method. In: Proceedings of the International Gas Turbine and Aeroengine Congress and Exhibition, Indianapolis, IN, 1999. ASME Paper 99–GT-214.

5. Sato Y, Hino T, Hinatsu M. Unsteady flow simulation around a moving body by an unstructured Navier–Stokes solver. In: Proceedings of the Sixth Numerical Towing Tank Symposium, Rome, Italy; 2003.

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