[6]
|
S.Bartels und A. Kaltenbach.
Explicit a posteriori error representation for variational problems and application to TV-minimization, eingereicht.
Preprint,
2023.
[PDF]
|
[5]
|
A. Kh. Balci und A. Kaltenbach.
Error analysis for a Crouzeix-Raviart approximation of the p(.)-Dirichlet problem, eingereicht.
Preprint,
2023.
[PDF]
|
[4]
|
S. Bartels und A. Kaltenbach.
Error analysis for a Crouzeix-Raviart approximation of the obstacle problem, eingereicht.
Preprint,
2023.
[PDF]
|
[3]
|
P. A. Gazca-Orozco und A. Kaltenbach.
On the L∞(0,T;L2(Ω)d)-stability of Discontinuous Galerkin schemes for incompressible flows, eingereicht.
Preprint,
2023.
[PDF]
|
[2]
|
A. Kaltenbach und M. Zeinhofer.
The Deep Ritz Method for Parametric p-Dirichlet Problems,
Preprint,
2022.
[PDF]
|
[1]
|
A. Kaltenbach.
Pseudo-monotone operator theory for unsteady problems in variable exponent spaces, eingereicht,
Preprint,
2020.
[PDF]
|
Zeitschriftenartikel
[15]
|
A. Kaltenbach.
Error analysis for a Crouzeix-Raviart approximation of the p-Dirichlet problem, eingereicht.
Journal of Numerical Mathematics (akzeptiert),
2023.
[PDF]
|
[14]
|
A. Kaltenbach und M. Růžička.
A Local Discontinuous Galerkin approximation for the p-Navier-Stokes system, Part III: Convergence rates for the pressure, eingereicht
SIAM Journal on Numerical Analysis,
2023.
[DOI]
|
[13]
|
A. Kaltenbach und M. Růžička.
A Local Discontinuous Galerkin approximation for the p-Navier-Stokes system, Part II: Convergence rates for the velocity, eingereicht
SIAM Journal on Numerical Analysis,
2023.
[DOI]
|
[12]
|
A. Kaltenbach und M. Růžička.
A Local Discontinuous Galerkin approximation for the p-Navier-Stokes system, Part I: Convergence analysis, eingereicht
SIAM Journal on Numerical Analysis,
2023.
[DOI]
|
[11]
|
A. Kaltenbach und M. Růžička.
Convergence analysis of a local Discontinuous Galerkin approximation for systems with Olicz–structure,
ESAIM: Mathematical Modelling and Numerical Analysis,
2023.
[DOI]
|
[10]
|
L. C. Berselli, A. Kaltenbach, R. Lewandowski und M. Růžička.
On the existence of weak solutions for a family of unsteady rotational Smagorinsky models,
Pure and Applied Functional Analysis (akzeptiert),
2023.
[PDF]
|
[9]
|
A. Kaltenbach und M. Růžička.
Existence of steady solutions for a model for micropolar electrorheological fluid flows with not globally log-Hölder continuous shear exponent,
Journal of Mathematical Fluid Mechanics (JMFM),
2023.
[DOI]
|
[8]
|
A. Kaltenbach und M. Růžička.
Analysis of a fully-discrete, non-conforming approximation of evolution equations and applications.
Mathematical Models and Methods in Applied Sciences (M3AS),
2023.
[DOI]
|
[7]
|
S. Bartels und A. Kaltenbach.
Explicit and efficient error estimation for convex minimization problems,
Mathematics of Computation,
2023.
[DOI]
|
[6]
|
A. Kaltenbach und M. Růžička.
Existence of steady solutions for a general model for micropolar electrorheological fluid flows,
SIAM Journal on Mathematical Analysis,
2023.
[DOI]
|
[5]
|
S. Bartels und A. Kaltenbach.
Error estimates for total-variation regularized minimization problems with singular solutions,
Numerische Mathematik,
2022.
[DOI]
|
[4]
|
A. Kaltenbach.
Note on the existence theory for non-induced evolution problems,
Mathematische Nachrichten,
2022.
[DOI]
|
[3]
|
A. Kaltenbach und M. Růžička.
Variable exponent Bochner–Lebesgue spaces with symmetric gradient structure,
Journal of Mathematical Analysis and Applications,
2021.
[DOI]
|
[2]
|
L. C. Berselli, A. Kaltenbach, und M. Růžička.
Analysis of fully discrete, quasi non-conforming approximation of evolution equations and applications,
Mathematical Models and Methods in Applied Sciences (M3AS),
2020.
[DOI]
|
[1]
|
A. Kaltenbach und M. Růžička.
Note on the existence theory for pseudo-monotone evolution problems,
Journal of Evolution Equations,
2020.
[DOI]
|