Aleksandra Babaryka

Research output

  1. 2022
  2. Investigation about the contribution of tectonic conditions to mining subsidence parameters

    Babaryka, A. & Benndorf, J., 2022, In: Mining Science. 29.2022, p. 105-118 14 p.

    Research output: Contribution to journalArticleResearchpeer-review

  3. 2023
  4. Ground Subsidence above Salt Caverns for Energy Storage: A Comparison of Prediction Methods with Emphasis on Convergence and Asymmetry

    Babaryka, A. & Benndorf, J., 7 Jun 2023, In: Mining. 3.2023, 2, p. 334-346 13 p.

    Research output: Contribution to journalArticleResearchpeer-review

  5. Published

    Tectonic stresses as the cause of asymmetry and shape deviation of subsidence profiles

    Babaryka, A., 27 Sept 2023.

    Research output: Contribution to conferencePresentationResearch

  6. Published
  7. Published

    Investigation of Mining Subsidence Prediction Under Tectonic Influences

    Babaryka, A., 12 Dec 2023, 177 p.

    Research output: ThesisDoctoral Thesis

  8. 2024
  9. Published

    SPECIM IQ: Hyperspektralkamera für Bergbauanwendungen

    Babaryka, A., Nov 2024.

    Research output: Contribution to conferencePosterTransfer

  10. Published

    Ground Movement Control in Energy Transition Areas – Status of the Bilateral German-Polish Project CLEAR

    Blachowski, J., Benndorf, J., Babaryka, A., Gießler, G., Glabicki, D., Grzempowski, P., Kaczmarek, A., Kubisch, F., Owczarz, K., Ashfaque, N. & Biernat, S., Dec 2024, In: Markscheidewesen, Das. 131.2024, 2, p. 42-55 14 p.

    Research output: Contribution to journalArticleResearchpeer-review

  11. 2025
  12. Accepted/In press

    New Subsidence Prediction Method Incorporating Asymmetry and Shape Flexibility: A Study Case of Salt Caverns in North Germany

    Babaryka, A., 17 Feb 2025, (Accepted/In press) In: Rock mechanics and rock engineering. ??? Stand: 28. März 2025, ??? Stand: 28. März 2025

    Research output: Contribution to journalArticleResearchpeer-review

  13. Published

    New Prediction Method of Subsidence Based on the Numerical Displacement Analysis: A Study Case of Deep-Buried Thick Alluvial Layer and Thin Bedrock

    Wang, J., Wu, S., Wang, Z., Babaryka, A., Tost, M. & Li, M., 28 Feb 2025, In: Rock mechanics and rock engineering. ??? Stand: 24. März 2025

    Research output: Contribution to journalArticleResearchpeer-review