Maximilian Reichel

M. Sc. Maximilian Reichel

Tel.: +49(0)-201-183-6647
Fax: +49(0)-201-183-2680

Raum: R12 S02 H08

maximilian.reichel@uni-due.de

Universität Duisburg-Essen

Fakultät für Ingenieurwissenschaften
Abteilung Bauwissenschaften
Institut für Mechanik
Universitätsstraße 15
Raum
R12 S02 H08
45141 Essen

 

Forschung

  • Mikromagnetische Simulationen von permanentmagnetischen und weichmagnetischen Materialien
  • Effiziente betrachtung von magnetischen offenen Randwertproblemen 

Werdegang

seit 10/2019

Wissenschaftlicher Mitarbeiter am Institut für Mechanik an der Universität Duisburg-Essen

03/2019 - 06/2019

Forschungsaufenthalt an der University of California, Berkeley, bei Prof. Tarek I. Zohdi

2017 - 2019

Masterstudium Computational Mechanics, M.Sc. an der Universität Duisburg-Essen
"Continuum mechanical description of magneto-mechanical materials in the framework of the invariant theory"

2013 - 2017

Bachelorstudium Bauingenieurwesen, B.Sc. an der Technischen Universität Dortmund
"Numerische Umsetzung der Phasenfeldmethode zur Simulation anisotroper Erstarrungsprozesse metallischer Legierungen"

2013

Abitur am Freiherr-vom-Stein-Gymnasium, Hamm

 

Publikationen

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M. Reichel, J. Schröder & B.X. Xu (2023) "Efficient micromagnetic finite element simulations using a perturbed Lagrange multiplier method", Proceedings in Applied Mathematics and Mechanics, Vol. 22(1), pp. e202200016.
BibTeX:
@Article{ReiSchXu:2022:emf,
  author  = {M. Reichel and J. Schr\"oder and B.-X. Xu},
  title   = {Efficient micromagnetic finite element simulations using a perturbed Lagrange multiplier method},
  journal = {Proceedings in Applied Mathematics and Mechanics},
  year    = {2023},
  volume  = {22},
  number  = {1},
  pages   = {e202200016},
  doi     = {10.1002/pamm.202200016},
}
M. Reichel, B.X. Xu & J. Schröder (2022) "A comparative study of finite element schemes for micromagnetic mechanically coupled simulations", Journal of Applied Physics, Vol. 132(18), pp. 183903.
BibTeX:
@Article{ReiXuSch:2022:acs,
  author  = {M.~Reichel and B.-X.~Xu and J.~Schr\"oder},
  title   = {A comparative study of finite element schemes for micromagnetic mechanically coupled simulations},
  journal = {Journal of Applied Physics},
  year    = {2022},
  volume  = {132}, 
  number  = {18},
  pages   = {183903},
  doi     = {10.1063/5.0105613},
}
C. Birk, M. Reichel & J. Schröder (2022) "Magnetostatic simulations with consideration of exterior domains using the scaled boundary finite element method", Computer Methods in Applied Mechanics and Engineering, Vol. 399, pp. 115362.
BibTeX:
@Article{BirReiSch:2022:msw,
  author  = {C.~Birk and M.~Reichel and J.~Schr\"oder},
  title   = {Magnetostatic simulations with consideration of exterior domains using the scaled boundary finite element method},
  journal = {Computer Methods in Applied Mechanics and Engineering},
  year    = {2022}, 
  volume  = {399},
  pages   = {115362},
  doi     = {10.1016/j.cma.2022.115362},
}
J. Schröder, M. Reichel & C. Birk (2022) "An efficient numerical scheme for the FE-approximation of magnetic stray fields in infinite domains", Computational Mechanics, Vol. 70, pp. 141-153.
BibTeX:
@Article{SchReiBir:2022:aen,
  author  = {J. ~Schr\"oder and M.~Reichel and C.~Birk},
  title   = {An efficient numerical scheme for the FE-approximation of magnetic stray fields in infinite domains},
  journal = {Computational Mechanics}, 
  year    = {2022},
  volume  = {70},
  pages   = {141-153},
  doi     = {10.1007/s00466-022-02162-1},
}
M. Reichel, B.X. Xu & J. Schröder (2021) "A comparative study of FE-schemes for micromagnetic simulations, Vol. 21(1), pp. e202100191.
BibTeX:
@Article{ReiXuSch:2021:acs,
  author  = {M.~Reichel and B.X.~Xu and J.~Schr\"oder},
  title   = {A comparative study of {FE}-schemes for micromagnetic simulations},
  journal = {Proceedings in Applied Mathematics and Mechanics},
  year    = {2021},
  volume  = {21},
  number  = {1},
  pages   = {e202100191},
  doi     = {10.1002/pamm.202100191},
}

Stand: 30.04.2019