Natalya Zeinalova, M.Sc.

Natalya Zeinalova, M.Sc.

  • Adenauerring 20b, 76131 Karlsruhe

Curriculum Vitae

Education

  • 2014–2018 National research Tomsk State University (TSU). Department of mathematical physics in the field of Macrokinetics of combustion of high-energy materials (Tomsk, Russia).
    Thesis: “Numerical modeling of the Rank-Hilsch effect in the vortex tube”.
    B.Sc. degree with honors
  • 2015–2018 National research Tomsk Polytechnic University (TPU). Diploma of additional higher education with honors in the Social and humanitarian Department, Translation and translation studies (Tomsk, Russia).
    Thesis: “Mathematical Modelling in Systems Biology: An Introduction” (Translation).
    B.Sc. degree with honors
  • 2018–2020 National research Tomsk State University (TSU). Department of mathematical physics in the field of Macrokinetics of combustion of high-energy materials (Tomsk, Russia).
    Thesis: “Determination of the parameters of an axial two-stage compressor for local ventilation based on numerical simulation”.
    M.Sc. degree with honors
  • 2021– present: PhD student at the Karlsruhe Institute of Technology (KIT), Karlsruhe (Germany)

 

Conference contributions

“Numerical simulation of temperature vortex separations in a rank-hilsh vortex tube” - VIII youth scientific the conference "Actual problems modern mechanics continuous media and celestial mechanics" - 2018, Tomsk

“Numerical simulation of the temperature separation of gas in a rank-hilsh vortex tube” - International Youth Science conference "Actual problems modern mechanics continuous media and celestial mechanics" - 2019, Tomsk

“Definition of the parameters of the two-stage axial compressor based on numerical simulation” - IV All-Russian scientific seminar with international participation “Interdisciplinary problems of additive technologies" - 2019, Tomsk

Publications


Numerical thermo-mechanical modelling of lava dome growth during the 2007-2009 dome-building eruption at Volcán de Colima
Zeinalova, N.; Ismail-Zadeh, A.; Tsepelev, I.; Melnik, O.; Schilling, F.
2024. Geophysical Journal International, 236 (1), 290–304. doi:10.1093/gji/ggad415
Inverse Problems in Lava Dynamics
Ismail-Zadeh, A.; Korotkii, A.; Melnik, O.; Starodubtsev, I.; Starodubtseva, Y.; Tsepelev, I.; Zeinalova, N.
2023. Applications of Data Assimilation and Inverse Problems in the Earth Sciences. Ed.: A. Ismail-Zadeh, 196–208, Cambridge University Press (CUP). doi:10.1017/9781009180412.013
Modelling of the lava dome growth the 2007-2009 dome-building eruption at Volcán de Colima, Mexico
Zeinalova, N.; Ismail-Zadeh, A.; Tsepelev, I.; Melnik, O.; Schilling, F.; Zobin, V.
2023. XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG), GFZ German Research Centre for Geosciences. doi:10.57757/IUGG23-0298
Numerical thermo-mechanical modelling of lava dome growth during the 2007-2009 dome-building eruption at Volcán de Colima
Zeinalova, N.; Ismail-Zadeh, A.; Tsepelev, I.; Melnik, O.; Schilling, F.
2023. EGU23-1068, Copernicus. doi:10.5194/egusphere-egu23-1068
Mathematical and Numerical Models of Lava Dome Dynamics
Zeinalova, N.; Ismail-Zadeh, A.; Melnik, O.; Tsepelev, I.
2022, Juni 23. 33rd IUGG Conference on Mathematical Geophysics (CMG 2022), Online, 20.–24. Juni 2022
Lava Dome Morphology and Viscosity Inferred From Data-Driven Numerical Modeling of Dome Growth at Volcán de Colima, Mexico During 2007-2009
Zeinalova, N.; Ismail-Zadeh, A.; Melnik, O.; Tsepelev, I.; Zobin, V.
2021. Frontiers in Earth Science, 9, 735914. doi:10.3389/feart.2021.735914
Numerical Modeling of the 2007-2009 Lava Dome Growth in the Crater of Volcán de Colima, México
Zeinalova, N.; Ismail-Zadeh, A.
2021. GeoKarlsruhe (DGGV 2021), Karlsruhe, Deutschland, 19.–24. September 2021. doi:10.48380/dggvt14h-wg06
Data-Driven Numerical Modeling of the Lava Dome Growth at Volcán de Colima, Mexico During 2007-2009
Zeinalova, N.; Ismail-Zadeh, A.; Melnik, O.; Tsepelev, I.; Zobin, V.
2021. American Geophysical Union (AGU) Fall Meeting (2021), New Orleans, LA, USA, 13.–17. Dezember 2021