Prof. Dr.-Ing. Peter F. Pelz
Chair of Fluid Systems
Contact
peter.pelz@tu-...
work +49 6151 16-27101
fax +49 6151 16-27111
Work
L1|01 465
Otto-Berndt-Straße 2
64287
Darmstadt
born in 1967 | |
Academic education | |
1986 – 1993 | Mechanical Engineering, TU Darmstadt |
1989 – 1990 | Mathematics, Trinity College Dublin, Ireland |
Scientific degrees | |
Doctorate: Topic: Supervisor: |
Mechanical Engineering, TU Darmstadt (2000) On the fluid mechanics of chromatographic columns Prof. Dr.-Ing. Joseph H. Spurk |
Professional career since graduation | |
since 2023 | Vice President for Digitalisation, Sustainability and Infrastructure, TU Darmstadt |
since 2006 | Professor TU Darmstadt, Chair of Fluid Systems |
2003 – 2006 | Manager Advanced Development, Vibracoustic GmbH & Co KG Hamburg |
1998 – 2002 | Team leader Fluid Mechanics and Rheology, Freudenberg R&D Services KG, Weinheim |
1993 – 1998 | Research assistant to Prof. J. H. Spurk, Fluid Dynamics, TU Darmstadt |
Other | |
since 2025 | Spokesperson NFDI4ING |
since 2022 | Founder and Editor-in-Chief of the Diamond Open Access Journal ing.grid – FAIR Data Management in Engineering Sciences |
since 2021 | Founder and spokesperson of the research field Energy & Environment (E&E) at TU Darmstadt |
since 2021 | Spokesperson for the Training & Education section (edutrain) of the National Research Data Infrastructure (NFDI) |
since 2020 | Deputy spokesperson for NFDI4Ing – National Research Data Infrastructure for Engineering Science |
2019 – 2020 | Dean of Studies of the Department of Mechanical Engineering |
since 2017 | Member of the Global Fluid Power Society (GFPS) |
since 2015 | German Expert in the German mirror committee CEN/TC 156/WG 17 |
2013 – 2021 | Spokesperson for the Collaborative Research Centre “Mastering Uncertainty in Load-Carrying Systems in Mechanical Engineering” |
since 2012 | Founding Partner of Industrial Science GmbH |
|
Hatzissawidis, G., Kuhr, M. M. G., & Pelz, P. F. (2025). The transition from re-entrant flow-driven to shockwave-driven cloud cavitation. Journal of Fluid Mechanics, 1004, A13. doi:10.1017/jfm.2024.1224 |
Meck, M., & Pelz, P. F. (2024). A set-covering approach to minimize the variety of standard chemical process pumps in equipment pools. Computers & Chemical Engineering, 185, 108673. doi:10.1016/j.compchemeng.2024.108673 |
Schmitz, C., & Pelz, P. F. (2023). Optimal control of tidal flow. Journal of Fluid Mechanics, 962, A37. doi:10.1017/jfm.2023.172 |
Pelz, P. F., Corneli, T., Mehrnia, S., & Kuhr, M. M. G. (2022). Temperature-dependent wall slip of Newtonian lubricants. Journal of Fluid Mechanics, 948, A8. doi:10.1017/jfm.2022.629 |
Pelz, P. F., Leise, P., & Meck, M. (2021). Sustainable aircraft design — A review on optimization methods for electric propulsion with derived optimal number of propulsors. Progress in Aerospace Sciences, 123, 100714. doi:10.1016/j.paerosci.2021.100714 |
Pelz, P. F., Metzler, M., Schmitz, C., & Müller, T. M. (2020). Upper limit for tidal power with lateral bypass. Journal of Fluid Mechanics, 889, A32. doi:10.1017/jfm.2020.99 |
Pelz, P. F., Friesen, J., & Hartig, J. (2019). Similar size of slums caused by a Turing instability of migration behavior. Physical review E, 99(2), 022302. doi:10.1103/PhysRevE.99.022302 |
Pelz, P. F., Keil, T., & Groß, T. F. (2017). The transition from sheet to cloud cavitation. Journal of Fluid Mechanics, 817, 439–454. doi:10.1017/jfm.2017.75 |
Groß, T. F., & Pelz, P. F. (2017). Diffusion-driven nucleation from surface nuclei in hydrodynamic cavitation. Journal of Fluid Mechanics, 830, 138–164. doi:10.1017/jfm.2017.587 |
Cloos, F.-J., Stapp, D., & Pelz, P. F. (2017). Swirl boundary layer and flow separation at the inlet of a rotating pipe. Journal of Fluid Mechanics, 811, 350–371. doi:10.1017/jfm.2016.734 |

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