Kostantinos Chrysafinos
Konstantinos Chrysafinos is Professor at the National Technical University of Athens. He is also an Associated Researcher at the Institute of Applied and Computational Mathematics (IACM) of FORTH.
Contact Info
KONSTANTINOS
CHRYSAFINOS
chrysafinos@math.ntua.gr
Department of Mathematics, School of Applied Mathematics and Applied Physical Sciences, National Technical University, Athens, 15780 GREECE
Publications
1) (with N.J. Walkington), “Discontinuous Galerkin approximations for the Stokes and Navier-Stokes equations”, Math. Comp., (79) No 272, 2010, pp 2135-2167.
2) (with E. Casas), “A discontinuous Galerkin time-stepping scheme for the velocity tracking problem”, SIAM J. Numer. Anal., (50) No 5, 2012, pp 2801-2306.
3) (with E. Karatzas), “Discontinuous Galerkin time-stepping schemes for Robin boundary control problems constrained to parabolic pdes”, SIAM J. Numer. Anal., (52) No1, 2014, pp 2837-2862.
4) (with E. Casas), “Analysis of the velocity tracking control problem for the 3D evolutionary Navier-Stokes equations”, SIAM J. Con. Optim. (54) 2016, pp 99-128.
5) “Stability analysis and best approximation error estimates of discontinuous time stepping schemes for the Allen-Cahn equation”, ESAIM: M2AN, (53) 2019, pp 551-583.
6) (with E. Casas), “Numerical analysis of quasilinear parabolic equations under low regularity assumptions”, Numer. Math., (143) 2019, pp 749-780.
2) (with E. Casas), “A discontinuous Galerkin time-stepping scheme for the velocity tracking problem”, SIAM J. Numer. Anal., (50) No 5, 2012, pp 2801-2306.
3) (with E. Karatzas), “Discontinuous Galerkin time-stepping schemes for Robin boundary control problems constrained to parabolic pdes”, SIAM J. Numer. Anal., (52) No1, 2014, pp 2837-2862.
4) (with E. Casas), “Analysis of the velocity tracking control problem for the 3D evolutionary Navier-Stokes equations”, SIAM J. Con. Optim. (54) 2016, pp 99-128.
5) “Stability analysis and best approximation error estimates of discontinuous time stepping schemes for the Allen-Cahn equation”, ESAIM: M2AN, (53) 2019, pp 551-583.
6) (with E. Casas), “Numerical analysis of quasilinear parabolic equations under low regularity assumptions”, Numer. Math., (143) 2019, pp 749-780.
Research
Numerical Analysis, Partial Differential Equations, Optimal Control, Navier-Stokes Equations.
