Marcus Herrmann

Assoc Professor

  • 1391 Citations
  • 19 h-Index
1992 …2021
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Personal profile

Education/Academic qualification

PHD, Aachen University of Applied Sciences

… → 2001

MS, Aachen University of Applied Sciences

… → 1995

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  • 3 Similar Profiles
Atomization Engineering & Materials Science
Liquids Engineering & Materials Science
Phase interfaces Engineering & Materials Science
atomizing Physics & Astronomy
Surface tension Engineering & Materials Science
Large eddy simulation Engineering & Materials Science
Computer simulation Engineering & Materials Science
Direct numerical simulation Engineering & Materials Science

Network Recent external collaboration on country level. Dive into details by clicking on the dots.

Research Output 1992 2019

A dual-scale approach for modeling turbulent liquid/gas phase interfaces

Kedelty, D., Uglietta, J. & Herrmann, M., Jan 1 2019, ERCOFTAC Series. Springer, p. 257-264 8 p. (ERCOFTAC Series; vol. 26).

Research output: Chapter in Book/Report/Conference proceedingChapter

Phase interfaces
1 Citation (Scopus)

A New Method for Simulating Embolic Coils as Heterogeneous Porous Media

Yadollahi-Farsani, H., Herrmann, M., Frakes, D. & Chong, B., Mar 15 2019, In : Cardiovascular Engineering and Technology. 10, 1, p. 32-45 14 p.

Research output: Contribution to journalArticle

Porous materials

Numerical study of hemodynamics in brain aneurysms treated with flow diverter stents using porous medium theory

Yadollahi-Farsani, H., Scougal, E., Herrmann, M., Wei, W., Frakes, D. & Chong, B., Jan 1 2019, In : Computer Methods in Biomechanics and Biomedical Engineering.

Research output: Contribution to journalArticle

Porous materials
Kinetic energy
3 Citations (Scopus)

An in-cell reconstruction finite volume method for flows of compressible immiscible fluids

Kannan, K., Kedelty, D. & Herrmann, M., Nov 15 2018, In : Journal of Computational Physics. 373, p. 784-810 27 p.

Research output: Contribution to journalArticle

compressible fluids
Compressible flow
finite volume method
Finite volume method
1 Citation (Scopus)

Modeling and numerical study of primary breakup under diesel conditions

Movaghar, A., Linne, M., Herrmann, M., Kerstein, A. R. & Oevermann, M., Jan 1 2018, In : International Journal of Multiphase Flow. 98, p. 110-119 10 p.

Research output: Contribution to journalArticle

Stochastic models
Turbulence models

Projects 2008 2021