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Staff Dr. Philipp Morgenstern

Mr. Morgenstern has left the institute. This page is no longer maintained.

Contact Information

E-Mail: ed tod revonnah-inu tod mafi ta nretsnegroma tod b@foo tod de


Summer semester 2015

See teaching activities of the whole group.

Completed Research Projects

Adaptive isogeometric modeling of propagating strong discontinuities in heterogeneous materials

DFG Priority Programme 1748.

Show description. Homepage.


  1. Mesh Refinement Strategies for the Adaptive Isogeometric Method. P. Morgenstern. PhD thesis, Institut für Numerische Simulation, Rheinische Friedrich-Wilhelms-Universität Bonn, 2017. BibTeX
  2. Adaptive Mesh Refinement Strategies in Isogeometric Analysis - A Computational Comparison. P. Hennig, M. Kästner, P. Morgenstern, and D. Peterseim. Comp. Meth. Appl. Mech. Eng., 316:424––448, 2017. BibTeX PDF DOI arXiv
  3. Complexity of hierarchical refinement for a class of admissible mesh configurations. A. Buffa, C. Giannelli, P. Morgenstern, and D. Peterseim. Computer Aided Geometric Design, 47:83–92, 2016. BibTeX PDF DOI
  4. Globally structured three-dimensional analysis-suitable T-splines: definition, linear independence and mm-graded local refinement. P. Morgenstern. SIAM J. Numer. Anal., 54(4):2163–2186, may 2016. Also available as INS Preprint No. 1508. BibTeX PDF DOI arXiv
  5. Multiscale partition of unity. P. Henning, P. Morgenstern, and D. Peterseim. In M. Griebel and M. A. Schweitzer, editors, Meshfree Methods for Partial Differential Equations VII, volume 100 of Lecture Notes in Computational Science and Engineering, pages 185–204. Springer International Publishing, 2015. BibTeX PDF DOI
  6. Analysis-suitable adaptive T-mesh refinement with linear complexity. P. Morgenstern and D. Peterseim. Computer Aided Geometric Design, 34:50–66, 2015. Also available as INS Preprint No. 1409. BibTeX PDF DOI
  7. Lokale Verfeinerung regulärer Triangulierungen in Vierecke. P. Morgenstern. Master's thesis, Institut für Mathematik, Humboldt-Universität zu Berlin, 2013. BibTeX