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    Implicit solution of inviscid flows on an unstructured mesh for bodies in large relative motion using a new grid movement scheme

    , Article Progress in Computational Fluid Dynamics ; Volume 6, Issue 7 , 2006 , Pages 379-388 ; 14684349 (ISSN) Mazaheri, K ; Ramezani, A ; Sharif University of Technology
    Inderscience Publishers  2006
    Abstract
    Both the grid movement scheme and the moving grid solver are considered. A new grid movement scheme for large amplitude moving boundaries such as store separation has been developed. Some popular grid movement methods have been studied to analyse capabilities of this method. In fact, this scheme could be an optimal combination of the overset grids method and the local remeshing as it uses their advantages and avoids some of their disadvantages. To have valid solution in moving grids, two conservation laws, which preserve independences of solution from grid motions, have been considered. These constraints, which are called Geometric Conservation Laws (GCL), have been satisfied implicitly... 

    Arbitrary Lagrangian-Eulerian unstructured finite-volume lattice-Boltzmann method for computing two-dimensional compressible inviscid flows over moving bodies

    , Article Physical Review E ; Volume 101, Issue 2 , 2020 Hejranfar, K ; Hashemi Nasab, H ; Azampour, M. H ; Sharif University of Technology
    American Physical Society  2020
    Abstract
    The objective of this study is to develop and apply an arbitrary Lagrangian-Eulerian unstructured finite-volume lattice-Boltzmann method (ALE-FVLBM) for solving two-dimensional compressible inviscid flows around moving bodies. The two-dimensional compressible form of the LB equation is considered and the resulting LB equation is formulated in the ALE framework on an unstructured body-fitted mesh to correctly model the body shape and properly incorporate the mesh movement due to the body motion. The spatial discretization of the resulting system of equations is performed by a second-order cell-centered finite-volume method on arbitrary quadrilateral meshes and an implicit dual-time stepping...