About Ioanna Mousikou Ioanna Mousikou Ph.D. Student, Applied Mathematics and Computational Science Applied PDE's numerical methods for PDE's Computational mathematics Short Bio Ms. Ioanna Mousikou is a Ph.D student in the AppliedPDE group of the Applied Mathematics and Computational Science program (AMCS) of CEMSE division at the King Abdullah University of Science and Technology, Saudi Arabia. During her second year at KAUST, she received a Master's degree in Applied Mathematics where the thesis was focused on numerical methods for hyperbolic conservation laws. Before joining KAUST, Ms. Ioanna completed undergraduate degree in Mathematics at the University of Cyprus. Education Profile M.Sc. KAUST, Saudi Arabia, 2016 B.Sc. Mathematics, University of Cyprus Events Presented Events Jul 2 - Jul 8, 2023 Axisymmetric flows with swirl for Euler and Navier-Stokes equations Ioanna Mousikou, Ph.D. Student, Applied Mathematics and Computational Science Jul 6, 15:00 - 16:00 B1 L4 R4214 We consider the incompressible axisymmetric Navier-Stokes equations as an idealized model of tornado-like flows. Assuming that an infinite vortex line that interacts with a boundary surface resembles the tornado core, we look for stationary self-similar solutions of the axisymmetric Euler and the axisymmetric Navier-Stokes equations emphasizing the connection among them as the viscosity ν → 0.
Axisymmetric flows with swirl for Euler and Navier-Stokes equations Ioanna Mousikou, Ph.D. Student, Applied Mathematics and Computational Science Jul 6, 15:00 - 16:00 B1 L4 R4214 We consider the incompressible axisymmetric Navier-Stokes equations as an idealized model of tornado-like flows. Assuming that an infinite vortex line that interacts with a boundary surface resembles the tornado core, we look for stationary self-similar solutions of the axisymmetric Euler and the axisymmetric Navier-Stokes equations emphasizing the connection among them as the viscosity ν → 0.
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