| 2013 | ||
|---|---|---|
| j20 | Sashikumaar Ganesan, Lutz Tobiska: Operator-splitting finite element algorithms for computations of high-dimensional parabolic problems. Applied Mathematics and Computation 219(11): 6182-6196 (2013) | |
| 2012 | ||
| j19 | Lianhua He, Lutz Tobiska: The two-level local projection stabilization as an enriched one-level approach. Adv. Comput. Math. 36(4): 503-523 (2012) | |
| j18 | Hans-Görg Roos, Lutz Tobiska: Martin Stynes - 60. Comput. Meth. in Appl. Math. 12(2): 121-122 (2012) | |
| j17 | Klim Kavaliou, Lutz Tobiska: A Finite Element Method for a Noncoercive Elliptic Problem with Neumann Boundary Conditions. Comput. Meth. in Appl. Math. 12(2): 168-183 (2012) | |
| j16 | Sashikumaar Ganesan, Lutz Tobiska: Arbitrary Lagrangian-Eulerian finite-element method for computation of two-phase flows with soluble surfactants. J. Comput. Physics 231(9): 3685-3702 (2012) | |
| j15 | Gunar Matthies, Lutz Tobiska: A two-level local projection stabilisation on uniformly refined triangular meshes. Numerical Algorithms 61(3): 465-478 (2012) | |
| 2011 | ||
| j14 | Naveed Ahmed, Gunar Matthies, Lutz Tobiska: Finite element methods of an operator splitting applied to population balance equations. J. Computational Applied Mathematics 236(6): 1604-1621 (2011) | |
| j13 | Hagen Eichel, Lutz Tobiska, Hehu Xie: Supercloseness and superconvergence of stabilized low-order finite element discretizations of the Stokes Problem. Math. Comput. 80(274): 697-722 (2011) | |
| 2010 | ||
| j12 | Sashikumaar Ganesan, Lutz Tobiska: Stabilization by Local Projection for Convection-Diffusion and Incompressible Flow Problems. J. Sci. Comput. 43(3): 326-342 (2010) | |
| 2009 | ||
| j11 | Sashikumaar Ganesan, Lutz Tobiska: A coupled arbitrary Lagrangian-Eulerian and Lagrangian method for computation of free surface flows with insoluble surfactants. J. Comput. Physics 228(8): 2859-2873 (2009) | |
| 2008 | ||
| j10 | Alexander Linke, Gunar Matthies, Lutz Tobiska: Non-nested multi-grid solvers for mixed divergence-free Scott-Vogelius discretizations. Computing 83(2-3): 87-107 (2008) | |
| j9 | Sashikumaar Ganesan, Gunar Matthies, Lutz Tobiska: Local projection stabilization of equal order interpolation applied to the Stokes problem. Math. Comput. 77(264): 2039-2060 (2008) | |
| 2007 | ||
| j8 | Leopoldo P. Franca, Volker John, Gunar Matthies, Lutz Tobiska: An inf-sup Stable and Residual-Free Bubble Element for the Oseen Equations. SIAM J. Numerical Analysis 45(6): 2392-2407 (2007) | |
| 2003 | ||
| j7 | Petr Knobloch, Lutz Tobiska: The P1mod Element: A New Nonconforming Finite Element for Convection-Diffusion Problems. SIAM J. Numerical Analysis 41(2): 436-456 (2003) | |
| j6 | Martin Stynes, Lutz Tobiska: The SDFEM for a Convection-Diffusion Problem with a Boundary Layer: Optimal Error Analysis and Enhancement of Accuracy. SIAM J. Numerical Analysis 41(5): 1620-1642 (2003) | |
| c3 | Teodora Mitkova, Lutz Tobiska: Numerical Simulation of the Flow in Magnetic Fluid Rotary Shaft Seals. LSSC 2003: 396-403 | |
| 2002 | ||
| j5 | Volker John, Petr Knobloch, Gunar Matthies, Lutz Tobiska: Non-Nested Multi-Level Solvers for Finite Element Discretisations of Mixed Problems. Computing 68(4): 313-341 (2002) | |
| j4 | Gunar Matthies, Lutz Tobiska: The Inf-Sup Condition for the Mapped Qk-Pk-1disc Element in Arbitrary Space Dimensions. Computing 69(2): 119-139 (2002) | |
| 2001 | ||
| j3 | Gunar Matthies, Lutz Tobiska: The Streamline-Diffusion Method for Conforming and Nonconforming Finite Elements of Lowest Order Applied to Convection-Diffusion Problems. Computing 66(4): 343-364 (2001) | |
| c2 | Teodora Mitkova, Lutz Tobiska: Numerical Modelling of the Flow in Magnetic Liquid Seals. LSSC 2001: 378-386 | |
| 2000 | ||
| j2 | Volker John, Lutz Tobiska: A Coupled Multigrid Method for Nonconforming Finite Element Discretizations of the 2D-Stokes Equation. Computing 64(4): 307-321 (2000) | |
| j1 | Vladimir Shaidurov, Lutz Tobiska: The convergence of the cascadic conjugate-gradient method applied to elliptic problems in domains with re-entrant corners. Math. Comput. 69(230): 501-520 (2000) | |
| 1999 | ||
| c1 | Volker John, Gunar Matthies, Teodora Mitkova, Lutz Tobiska, Panayot Vassilevski: A Comparison of Three Solvers for the Incompressible Navier-Stokes Equations. LSSC 1999: 215-222 | |
| 1 | Naveed Ahmed | |
| 2 | Hagen Eichel | |
| 3 | Leopoldo P. Franca | |
| 4 | Sashikumaar Ganesan | |
| 5 | Lianhua He | |
| 6 | Volker John | |
| 7 | Klim Kavaliou | |
| 8 | Petr Knobloch | |
| 9 | Alexander Linke | |
| 10 | Gunar Matthies | |
| 11 | Teodora Mitkova | |
| 12 | Hans-Görg Roos (Hans-Goerg Roos) | |
| 13 | Vladimir Shaidurov | |
| 14 | Martin Stynes | |
| 15 | Panayot Vassilevski (Panayot S. Vassilevski, P. S. Vassilevski) | |
| 16 | Hehu Xie |
Colors in the list of coauthors
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