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    Numerical Analysis of Incompressible Flow around an Oscillating Airfoil Using Artificial Compressibility Approach and Vorticity Confinement Method

    , M.Sc. Thesis Sharif University of Technology Marami Zenouz, Sadaf (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In this study, the numerical simulation of the two-dimensional incompressible flow around an oscillating airfoil is performed. For this aim, the incompressible Navier-Stokes equations based on the artificial compressibility approach written in the arbitrary Lagrangian-Eulerian form are considered. Then, the vorticity confinement method is incorporated in the formulation and the resulting system of equations is solved by a second-order central-difference finite volume method with the controllable dissipation terms. For the time integration, the implicit dual-time stepping scheme is implemented. At first, the numerical solution of the incompressible flow over the oscillating NACA0012 airfoil... 

    Numerical Simulation of Viscous Compressible Flow Around an Oscilating Airfoil Using Immersed Boundary Method

    , M.Sc. Thesis Sharif University of Technology Gholami Haghighi Fard, Morteza (Author) ; Hejranfar, Kazem (Supervisor)
    Abstract
    In the present study, the computation of the viscous compressible flow over two-dimensional geometries is performed by using the immersed boundary method and applying a second-order finite volume scheme. For the solution of the governing equations, a uniform Cartesian grid that is not coincident with the body surface is used and the boundary conditions on the wall are satisfied by the ghost-cell immersed boundary method. The spatial discretization of the fluid equations is carried out using the second-order central difference finite volume scheme and the time integration is performed by applying the fourth-order Runge-Kutta method. To stabilize the solution algorithm and reduce unwanted... 

    Experimental Study of Transition on an Airfoil in Pitching-Plunging Motion

    , Ph.D. Dissertation Sharif University of Technology Akhlaghi, Hassan (Author) ; Soltani, Mohammad Reza (Supervisor) ; Maghrebi, Mohammad Javad (Co-Supervisor) ; Ghorbanian, Kaveh (Co-Supervisor)
    Abstract
    Laminar-to-turbulent transition is very important concept in fluid dynamics due to its significant role on skin friction drag and heat transfer. It is more important in the fluid-based systems such as wind turbines. Employing computational fluid dynamics is still not efficient on prediction of flow transition, especially in complex problems such as oscillating airfoils. In one hand, flow transition models are not still suitable for general engineering flows such as oscillating airfoils. On other hand, due to the lack of experimental data, the existing flow solvers have not proven in the accurate simulation of the flow field simulation for complex problems such as oscillating airfoils. This...