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Publication search results
found 12 matches
- 2024
- Lukas Lundgren, Murtazo Nazarov:
A high-order residual-based viscosity finite element method for incompressible variable density flow. J. Comput. Phys. 497: 112608 (2024) - Lukas Lundgren, Murtazo Nazarov:
A fully conservative and shift-invariant formulation for Galerkin discretizations of incompressible variable density flow. J. Comput. Phys. 510: 113086 (2024) - Tuan Anh Dao, Lukas Lundgren, Murtazo Nazarov:
Viscous Regularization of the MHD Equations. SIAM J. Appl. Math. 84(4): 1439-1459 (2024) - Tuan Anh Dao, Lukas Lundgren, Murtazo Nazarov:
Viscous regularization of the MHD equations. CoRR abs/2402.03929 (2024) - Mats Gustafsson, Lukás Jelínek, Miloslav Capek, Johan Lundgren, Kurt Schab:
Theory and Computation of Substructure Characteristic Modes. CoRR abs/2403.00792 (2024) - 2023
- Lukas Lundgren, Murtazo Nazarov:
A high-order artificial compressibility method based on Taylor series time-stepping for variable density flow. J. Comput. Appl. Math. 421: 114846 (2023) - Lukas Lundgren, Murtazo Nazarov:
A fully conservative and shift-invariant formulation for Galerkin discretizations of incompressible variable density flow. CoRR abs/2305.04813 (2023) - 2022
- Miloslav Capek, Johan Lundgren, Mats Gustafsson, Kurt Schab, Lukás Jelínek:
Characteristic Mode Decomposition Using the Scattering Dyadic in Arbitrary Full-Wave Solvers. CoRR abs/2206.06783 (2022) - Johan Lundgren, Kurt Schab, Miloslav Capek, Mats Gustafsson, Lukás Jelínek:
Iterative Calculation of Characteristic Modes Using Arbitrary Full-wave Solvers. CoRR abs/2209.00097 (2022) - Lukas Lundgren, Murtazo Nazarov:
A high-order artificial compressibility method based on Taylor series time-stepping for variable density flow. CoRR abs/2209.09698 (2022) - 2021
- Vidar Stiernström, Lukas Lundgren, Murtazo Nazarov, Ken Mattsson:
A residual-based artificial viscosity finite difference method for scalar conservation laws. J. Comput. Phys. 430: 110100 (2021) - 2020
- Lukas Lundgren, Ken Mattsson:
An efficient finite difference method for the shallow water equations. J. Comput. Phys. 422: 109784 (2020)
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