Vadym Aizinger, Ph.D.



Organisation


Professur für Angewandte Mathematik (Wissenschaftliches Rechnen)
Lehrstuhl für Angewandte Mathematik



Project lead


OCEAN: Rechenleistungsoptimierte Software-Strategien für auf unstrukturierten Gittern basierende Anwendungen in der Ozeanmodellierung
Vadym Aizinger; Dr. Roberto Grosso; Prof. Dr. Harald Köstler
(01/01/2017 - 30/09/2020)


Publications (Download BibTeX)

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Reuter, B., Rupp, A., Aizinger, V., & Knabner, P. (2019). Discontinuous Galerkin method for coupling hydrostatic free surface flows to saturated subsurface systems. Computers & Mathematics With Applications, 77(9), 2291-2309. https://dx.doi.org/10.1016/j.camwa.2018.12.020
Hajduk, H., Kuzmin, D., & Aizinger, V. (2019). New directional vector limiters for discontinuous Galerkin methods. Journal of Computational Physics, 384, 308-325. https://dx.doi.org/10.1016/j.jcp.2019.01.032
Aizinger, V., Rupp, A., Schütz, J., & Knabner, P. (2018). Analysis of a mixed discontinuous Galerkin method for instationary Darcy flow. Computational Geosciences, 22(1), 179-194. https://dx.doi.org/10.1007/s10596-017-9682-8
Fried, M., Aizinger, V., & Bungert, L. (2018). Comparison of two local discontinuous Galerkin formulations for the subjective surfaces problem. Computing and Visualization in Science. https://dx.doi.org/10.1007/s00791-018-0291-4
Jaust, A., Reuter, B., Aizinger, V., Schütz, J., & Knabner, P. (2018). FESTUNG: A MATLAB/GNU Octave toolbox for the discontinuous Galerkin method. Part III: Hybridized discontinuous Galerkin (HDG) formulation. Computers & Mathematics With Applications, 75(12), 4505-4533. https://dx.doi.org/10.1016/j.camwa.2018.03.045
Marx, A., Conrad, M., Aizinger, V., Prechtel, A., van Geldern, R., & Barth, J. (2018). Groundwater data improve modelling of headwater stream CO2 outgassing with a stable DIC isotope approach. Biogeosciences, 15(10), 3093-3106. https://dx.doi.org/10.5194/bg-15-3093-2018
Hajduk, H., Hodges, B.R., Aizinger, V., & Reuter, B. (2018). Locally Filtered Transport for computational efficiency in multi-component advection-reaction models. ENVIRON MODELL SOFTW , 102, 185-198. https://dx.doi.org/10.1016/j.envsoft.2018.01.003
Aizinger, V., Kosik, A., Kuzmin, D., & Reuter, B. (2017). Anisotropic slope limiting for discontinuous Galerkin methods. International Journal For Numerical Methods in Fluids, in press. https://dx.doi.org/10.1002/fld.4360
Bungert, L., Aizinger, V., & Fried, M. (2016). A Discontinuous Galerkin Method for the Subjective Surfaces Problem. Journal of Mathematical Imaging and Vision, in press. https://dx.doi.org/10.1007/s10851-016-0695-z
Schönwetter, D., Ditter, A., Aizinger, V., Reuter, B., & Fey, D. (2016). Cache Aware Instruction Accurate Simulation of a 3-D Coastal Ocean Model on Low Power Hardware. In Merkuryev Y, Ören T, Obaidat M (Eds.), (pp. 129-137). Lisbon, PT: SCITEPRESS.

Last updated on 2018-26-10 at 14:14