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Project I : A control-volume-based finite element method is used to solve the in compressible flow, in a lid-driven cavity. Project II : Roe's Riemann solver is used for compressible Euler equations on unstructured grids, flow on an airfoil.

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Amirkabir University of Technology, Department of Aerospace Engineering, Course project: CFD II

The projects for graduate level course CFD II

  • Project I : A control-volume-based finite element method is used to solve the incompressible flow (in a lid-driven cavity). This is an implementation of https://doi.org/10.2514/3.12700

  • Project II : Roe's Riemann solver is used for compressible Euler equations on unstructured grids (flow on an airfoil)

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Project I : A control-volume-based finite element method is used to solve the in compressible flow, in a lid-driven cavity. Project II : Roe's Riemann solver is used for compressible Euler equations on unstructured grids, flow on an airfoil.

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