Solveigh Averweg

M. Sc. Solveigh Averweg

Tel.: 0201 183 2683
Fax: 0201 183 2680
Room: V15 S06 D81

solveigh.averweg@uni-due.de

Universität Duisburg-Essen

Fakultät für Ingenieurwissenschaften
Abteilung Bauwissenschaften
Institut für Mechanik
Universitätsstraße 15
Raum V15 S06 D81

45141 Essen

Research

  • Least-Squares finite element methods for the simulation of fluid-structure interaction problems

Lehre

Career

2009  High School Diploma (Abitur) at Gymnasium Remigianum in Borken
2009-2010    Aupair in France
2010-2013        Civil Engineering Studies, B.Sc. at University Duisburg-Essen
2013  Semester Abroad at Griffith University in Australia
2014  Bachelor of Science Bauingenieurwesen,
“Comparison and implementation of least-squares and Kriging approximation approaches“,
University Duisburg-Essen
2014-2016        Computational Mechanics, M.Sc. at University Duisburg-Essen
2016  Master of Science Computational Mechanics,
"Least-squares FEM with Lagrange interpolation in 2D and 3D for the S-V-P formulation of the incompressible Navier-Stokes equations",
University Duisburg-Essen
Since 2017 Research assistant at Institute of Mechanics,
University Duisburg-Essen

 

Publications

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Averweg, S., Schwarz, A., Nisters, C. & Schröder, J. (2018), "Implicit time discretization schemes for least-squares finite element formulations to model incompressible flows", Proceedings in Applied Mathematics and Mechanics. Vol. 18, pp. e201800166 (2 pages).
BibTeX:
@article{AveSchNisSch:2018:itd,
  author = {S. Averweg and A. Schwarz and C. Nisters and J. Schröder},
  title = {Implicit time discretization schemes for least-squares finite element formulations to model incompressible flows},
  journal = {Proceedings in Applied Mathematics and Mechanics},
  year = {2018},
  volume = {18},
  pages = {e201800166 (2 pages)}
}
Nisters, C., Schwarz, A., Averweg, S. & Schröder, J. (2018), "Remarks on a Fluid-Structure Interaction Scheme Based on the Least-Squares Finite Element Method at Small Strains", In Advances in Mechanics of Materials and Structural Analysis: In Honor of Reinhold Kienzler. , pp. 261-279. Springer International Publishing.
BibTeX:
@incollection{NisSchAverSch:2017:roa,
  author = {Nisters, Carina and Schwarz, Alexander and Averweg, Solveigh and Schröder, Jörg},
  title = {Remarks on a Fluid-Structure Interaction Scheme Based on the Least-Squares Finite Element Method at Small Strains},
  booktitle = {Advances in Mechanics of Materials and Structural Analysis: In Honor of Reinhold Kienzler},
  publisher = {Springer International Publishing},
  year = {2018},
  pages = {261--279}
}
Schwarz, A., Averweg, S., Nisters, C. & Schröder, J. (2018), "A fluid-structure interaction approach with inherently fulfilled coupling conditions", Proceedings in Applied Mathematics and Mechanics. Vol. 18, pp. e201800183 (2 pages).
BibTeX:
@article{SchAveNisSch:2018:afs,
  author = {A. Schwarz and S. Averweg and and C. Nisters and J. Schröder},
  title = {A fluid-structure interaction approach with inherently fulfilled coupling conditions},
  journal = {Proceedings in Applied Mathematics and Mechanics},
  year = {2018},
  volume = {18},
  pages = {e201800183 (2 pages)}
}
Schwarz, A., Nisters, C., Averweg, S. & Schröder, J. (2018), "Stress-Velocity Mixed Least-Squares FEMs for the Time-Dependent Incompressible Navier-Stokes Equations", In Large-Scale Scientific Computing. Cham., pp. 137-144. Springer International Publishing.
BibTeX:
@inproceedings{SchNisAveSch:2017:svm,
  author = {Schwarz, Alexander and Nisters, Carina and Averweg, Solveigh and Schröder, Jörg},
  title = {Stress-Velocity Mixed Least-Squares FEMs for the Time-Dependent Incompressible Navier-Stokes Equations},
  booktitle = {Large-Scale Scientific Computing},
  publisher = {Springer International Publishing},
  year = {2018},
  pages = {137--144}
}

Stand: 02.05.2019