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    Acoustoelastic Simulation of Baffled Container Using Boundary Element Method

    , M.Sc. Thesis Sharif University of Technology Bornassi, Saeed (Author) ; Haddadpour, Hassan (Supervisor) ; Dehghani Firoozabadi, Rouhollah (Co-Advisor)
    Abstract
    In this project, the acoustoelastic simulation of baffled cavities using boundary element method is investigated. At first step, the acoustic field for an enclosed rigid cavity with baffle is formulated and then solved by dual reciprocity boundary element method. In order to derive the governing equation, the acoustic domain is considered without mean flow and the fluid is assumed to be compressible and inviscid. Using the developed model and applying the zoning method, behavior and response of baffled cavities are investigated. In order to study the structure_acoustic interaction, modal reduced order model is used to explain the vibration of structure in combination to acoustic field. The... 

    Computational Simulation of a 2D Sloshing Flow in a Rectangular Tank with Baffle, Using LBM

    , M.Sc. Thesis Sharif University of Technology Goudarzi, Saman (Author) ; Tayyebi Rahni, Mohammad (Supervisor)
    Abstract
    In the this study, a numerical simulation of two-dimensional incompressible sloshing flow in a rectangular tank with baffle(s), using Lattice Boltzmann Method (LBM) is presented. Finite difference LBM and two-phase "Lee" model were used. The potential form of intermolecular forces is utilized to guarantee the stability of the numerical scheme and the discretization of the solution domain is performed by a two dimensional structured grid. Two different distribution functions are applied to obtain pressure, momentum, and composition of the particles. Furthermore, the Boltzmann transport equation is discretized, by using standard D2Q9 method. The "dropl" test case is simulated by the present... 

    Fluid Sloshing in Tanks with Perforated Baffles

    , M.Sc. Thesis Sharif University of Technology Zojaji, Mohammad Masoud (Author) ; Dehghani Firouzabadi, Rouhollah (Supervisor)
    Abstract
    The issue of fluid sloshing in vessels is of paramount importance in aerospace engineering. To suppress sloshing Baffles are used and one kind of baffles is “Perforated Baffle” that is good in weight efficiency. When fluid passes through Perforated Baffle, the energy dissipates and sloshing induces. The purpose of this study is to develop a model for linear sloshing in presence of a Perforated Baffle in the vessel. In this project, the flow is modeled by potential function. The Flow may be rotational in the nearby of baffle due to viscosity when it passes through-out perforations, so Laplace's equation for the velocity potential is useless in this region. To simulate the flow in such zones,...