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Ionut Danaila
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2020 – today
- 2025
- [j16]Georges Sadaka, Pierre Jolivet, Efstathios G. Charalampidis, Ionut Danaila:
Parallel finite-element codes for the Bogoliubov-de Gennes stability analysis of Bose-Einstein condensates. Comput. Phys. Commun. 306: 109378 (2025) - 2024
- [j15]Georges Sadaka, Victor Kalt, Ionut Danaila, Frédéric Hecht:
A finite element toolbox for the Bogoliubov-de Gennes stability analysis of Bose-Einstein condensates. Comput. Phys. Commun. 294: 108948 (2024) - [i4]Cyril Tain, Jean-Guy Caputo, Ionut Danaila:
Influence of gauges in the numerical simulation of the time-dependent Ginzburg-Landau model. CoRR abs/2408.16086 (2024) - [i3]Bahae-Eddine Madir, Francky Luddens, Corentin Lothodé, Ionut Danaila:
Physics Informed Neural Networks for heat conduction with phase change. CoRR abs/2410.14216 (2024) - 2023
- [j14]Cécile Legrand, Francky Luddens, Ionut Danaila:
On the convergence of a low order Lagrange finite element approach for natural convection problems. Comput. Math. Appl. 147: 259-277 (2023) - [j13]Victor Kalt, Georges Sadaka, Ionut Danaila, Frédéric Hecht:
Identification of vortices in quantum fluids: Finite element algorithms and programs. Comput. Phys. Commun. 284: 108606 (2023) - [j12]Marc Brachet, Georges Sadaka, Zhentong Zhang, Victor Kalt, Ionut Danaila:
Coupling Navier-Stokes and Gross-Pitaevskii equations for the numerical simulation of two-fluid quantum flows. J. Comput. Phys. 488: 112193 (2023) - 2022
- [i2]Ionut Danaila, Francky Luddens, Cécile Legrand:
On the convergence of a low order Lagrange finite element approach for natural convection problems. CoRR abs/2207.12732 (2022) - 2021
- [j11]Michikazu Kobayashi, Philippe Parnaudeau, Francky Luddens, Corentin Lothodé, Luminita Danaila, Marc Brachet, Ionut Danaila:
Quantum turbulence simulations using the Gross-Pitaevskii equation: High-performance computing and new numerical benchmarks. Comput. Phys. Commun. 258: 107579 (2021) - 2020
- [j10]Aina Rakotondrandisa, Georges Sadaka, Ionut Danaila:
A finite-element toolbox for the simulation of solid-liquid phase-change systems with natural convection. Comput. Phys. Commun. 253: 107188 (2020) - [j9]Georges Sadaka, Aina Rakotondrandisa, Pierre-Henri Tournier, Francky Luddens, Corentin Lothodé, Ionut Danaila:
Parallel finite-element codes for the simulation of two-dimensional and three-dimensional solid-liquid phase-change systems with natural convection. Comput. Phys. Commun. 257: 107492 (2020) - [i1]Michikazu Kobayashi, Philippe Parnaudeau, Francky Luddens, Corentin Lothodé, Luminita Danaila, Marc Brachet, Ionut Danaila:
Quantum turbulence simulations using the Gross-Pitaevskii equation: high-performance computing and new numerical benchmarks. CoRR abs/2003.03590 (2020)
2010 – 2019
- 2018
- [j8]Andreas Papoutsakis, Sergei S. Sazhin, Steven Begg, Ionut Danaila, Francky Luddens:
An efficient Adaptive Mesh Refinement (AMR) algorithm for the Discontinuous Galerkin method: Applications for the computation of compressible two-phase flows. J. Comput. Phys. 363: 399-427 (2018) - 2017
- [j7]Ionut Danaila, Bartosz Protas:
Computation of Ground States of the Gross-Pitaevskii Functional via Riemannian Optimization. SIAM J. Sci. Comput. 39(6) (2017) - 2016
- [j6]Guillaume Vergez, Ionut Danaila, Sylvain Auliac, Frédéric Hecht:
A finite-element toolbox for the stationary Gross-Pitaevskii equation with rotation. Comput. Phys. Commun. 209: 144-162 (2016) - 2014
- [j5]Ionut Danaila, Raluca Moglan, Frédéric Hecht, Stéphane Le Masson:
A Newton method with adaptive finite elements for solving phase-change problems with natural convection. J. Comput. Phys. 274: 826-840 (2014) - 2012
- [j4]Y. Zhang, Ionut Danaila:
A finite element BFGS algorithm for the reconstruction of the flow field generated by vortex rings. J. Num. Math. 20(3-4): 325-342 (2012) - [j3]Parimah Kazemi, Ionut Danaila:
Sobolev Gradients and Image Interpolation. SIAM J. Imaging Sci. 5(2): 601-624 (2012) - 2010
- [j2]Ionut Danaila, Frédéric Hecht:
A finite element method with mesh adaptivity for computing vortex states in fast-rotating Bose-Einstein condensates. J. Comput. Phys. 229(19): 6946-6960 (2010) - [j1]Ionut Danaila, Parimah Kazemi:
A New Sobolev Gradient Method for Direct Minimization of the Gross--Pitaevskii Energy with Rotation. SIAM J. Sci. Comput. 32(5): 2447-2467 (2010)
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