This image showsAnna Mareike Kostelecky

Anna Mareike Kostelecky

M. Sc.

Academic Staff
Institute for Modelling Hydraulic and Environmental Systems
Department of Hydromechanics and Modelling of Hydrosystems

Contact

Pfaffenwaldring 61
70569 Stuttgart
Germany
Room: 1.009

Abitur

2015 in Wilhelmsdorf (Germany)

Academic Degrees

2019: B.Sc. in "Simulation Technology", University of Stuttgart (Germany)
2022: M.Sc. in "Simulation Technology", University of Stuttgart (Germany)

Academic Career

since October 2022: Doctoral Researcher, Institute for Modelling Hydraulic and Environmental Systems, University of Stuttgart (Germany)

Publications

  1. Journal Articles

    1. Kostelecky, A. M., Stefansson, I., Bringedal, C., Ghosh, T., Dahle, H. K., & Helmig, R. (2026). Local Thermal Non-equilibrium Models in Porous Media: A Comparative Study of Conduction Effects. Transport in Porous Media, 153, Article 5. https://doi.org/10.1007/s11242-026-02305-5
    2. Grether, S., Kostelecky, A. M., Kiemle, S., Schneider, M., & Helmig, R. (2026). A Dual-Continuum Approach for Precipitated Salt in Porous Media: Accounting for Coupled Transport Processes. Transport in Porous Media, 153, Article 4. https://doi.org/10.1007/s11242-026-02302-8
  2. Datasets

    1. Kostelecky, A. M. (2025, March). DuMuX code for dual network for: “Local Thermal Non-Equilibrium Models in Porous Media: A Comparative Study of Conduction effects” [DaRUS]. https://doi.org/10.18419/DARUS-4781
    2. Kostelecky, A. M. (2025, March). Replication Data for: “Local Thermal Non-Equilibrium Models in Porous Media: A Comparative Study of Conduction effects” [DaRUS]. https://doi.org/10.18419/DARUS-4782
    3. Oukili, H., Ackermann, S., Buntic, I., Class, H., Coltman, E., Flemisch, B., Ghosh, T., Gläser, D., Grüninger, C., Hommel, J., Jupe, T., Keim, L., Kelm, M., Kiemle, S., Koch, T., Kostelecky, A. M., Pallam, H. V., Schneider, M., Stadler, L., et al. (2023). DuMux 3.7.0 [DaRUS]. https://doi.org/10.18419/DARUS-3405
  3. Master’s Theses

    1. Kostelecky, A. M. (2022). Coupled Turbulent Free- and Porous Media Flows: Investigations of Interfacial Roughness [Mastersthesis].

Supervised student assignements

  1. Model development for coupled shallow-water and saturated porous media systems. (2026). (Forschungsmodul).
  2. Modelling salt precipitation in porous media: Development of a double-porosity model. (2023). (Bachelor’s Thesis).
  3. Modelling flow and transport through a salt crust on top of a porous media. (2023). (Project thesis).

Current research projects

Completed Projects

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