Martin Bauer



Organisation


Lehrstuhl für Informatik 10 (Systemsimulation)


Project member


HPC2SE: Hardware- und Leistungsorientierte Codegenerierung für Informatik und Ingenieurwesen
Prof. Dr. Harald Köstler; Prof. Dr. Ulrich Rüde
(01/01/2017 - 31/12/2019)

SKAMPY: Ultra-Skalierbare Multiphysiksimulationen für Erstarrungsprozesse in Metallen
Prof. Dr. Ulrich Rüde
(01/02/2016 - 31/01/2019)

waLBerla: waLBerla - Widely applicable Lattice Boltzmann from Erlangen
Prof. Dr. Harald Köstler; Prof. Dr. Ulrich Rüde
(01/01/2007 - 01/01/2099)


Publications (Download BibTeX)

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Schornbaum, F., Godenschwager, C., Bauer, M., & Rüde, U. (2016, April). Peta-scale Simulations with the HPC Software Framework waLBerla. Paper presentation at SIAM Conference on Parallel Processing 2016 (SIAM-PP16), Paris, FR.
Hoetzer, J., Steinmetz, P., Jainta, M., Schulz, S., Kellner, M., Nestler, B.,... Rüde, U. (2016). Phase-field simulations of spiral growth during directional ternary eutectic solidification. Acta Materialia, 106, 249-259. https://dx.doi.org/10.1016/j.actamat.2015.12.052
Bauer, M., Schornbaum, F., Godenschwager, C., Markl, M., Anderl, D., Rüde, U., & Köstler, H. (2015). A Python extension for the massively parallel multiphysics simulation framework waLBerla. International Journal of Distributed and Parallel Systems , 1-14. https://dx.doi.org/10.1080/17445760.2015.1118478
Bauer, M., Pursiainen, S., Vorwerk, J., Köstler, H., & Wolters, C. (2015). Comparison Study for Whitney (Raviart-Thomas)-Type Source Models in Finite-Element-Methods-Based EEG Forward Modeling. IEEE transactions on bio-medical engineering, 62(11), 2648-2656. https://dx.doi.org/10.1109/TBME.2015.2439282
Hötzer, J., Jainta, M., Steinmetz, P., Nestler, B., Dennstedt, A., Genau, A.,... Rüde, U. (2015). Large scale phase-field simulations of directional ternary eutectic solidification. Acta Materialia, 93, 194-204. https://dx.doi.org/10.1016/j.actamat.2015.03.051
Bauer, M., Hötzer, J., Jainta, M., Steinmetz, P., Berghoff, M., Schornbaum, F.,... Rüde, U. (2015). Massively Parallel Phase-field Simulations for Ternary Eutectic Directional Solidification. In ACM (Eds.), Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis (pp. 8:1 - 8:12). Austin, US: New York: ACM.
Bauer, M., Köstler, H., & Rüde, U. (2015). Massively Parallel Phase-Field Simulation using HPC Framework waLBerla. In Proceedings of the SIAM Conference on Computational Science and Engineering. Salt Lake City, US.
Bauer, M., Schornbaum, F., Godenschwager, C., Markl, M., Anderl, D., Köstler, H., & Rüde, U. (2014). A Python extension for the massively parallel framework waLBerla. In online (pp. 1-8). New Orleans, US.
Delgado, A., Rauh, C., Gladbach, K., Anderl, D., Diez Robles, L., Rüde, U., & Bauer, M. (2014). Experimentell validierte Simulation strömungsinduzierter Effekte auf Proteinschäume mittels Lattice-Boltzmann-Methoden. In Proteinschäume in der Lebensmittelproduktion: Mechanismenaufklärung, Modellierung und Simulation. (pp. 103-121). Bonn: FEI.
Anderl, D., Bauer, M., Rauh, C., Rüde, U., & Delgado, A. (2014). Numerical Simulation of Adsorption and Bubble Interaction in Protein Foams with the Lattice Boltzmann Method. Food & Function, 5(4), 755-763. https://dx.doi.org/10.1039/C3FO60374A

Last updated on 2016-05-05 at 05:24