Felix Reinke, M.Sc.
- Research Associate
- Wet separation of metal particles
- Group:
- Phone: +49 721 608-46564
- Fax: +49 721 608-46563
- felix reinke ∂ kit edu
Institut für Mechanische Verfahrenstechnik und Mechanik
Karlsruher Institut für Technologie (KIT)
Geb. 30.70
Straße am Forum 8
D-76131 Karlsruhe
Research Topic
Development of a measurement and control systematology for particle separators that automatically adapts to changing requirements
Since today's process dusts in mechanical separation processes are becoming increasingly complex and changing materials and processing parameters actually require constantly changing extraction criteria, dry dust removal equipment should offer a high degree of flexibility as well as real-time process monitoring. However, monitoring of the separators condition is currently done via less informative parameters such as fan or filter differential pressure.
The aim of this research project is to develop a measurement and control system for particle separators that automatically adapts to changing requirements. This system will record and process all the necessary process parameters during operation in order to use these parameters and a digital twin to predict future behavior and react accordingly.
Title | Authors | Source |
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Investigation of the potential of in-line particle concentration measurements in gas particle separation processes by using low-cost particulate matter sensors | F. Reinke, J. Meyer, A. Dittler |
Journal of Aerosol Science, 2024, 106476, https://doi.org/10.1016/j.jaerosci.2024.106476 (open acess) |
Applied geometry optimization of an innovative 3D-printed wet-scrubber nozzle with a Lattice Boltzmann method | F. Reinke, N. Hafen, M. Haussmann, M. Novosel, M.J. Krause, A. Dittler |
Chemie Ingenieur Technik, 2022, 94, No. 3, 348-355, https://doi.org/10.1002/cite.202100151 (open access) |
Title | Conference | Authors |
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Additive manufacturing in gas cleaning applications | AMPA 2023 − Additive Manufacturing for Products and Applications |
F. Reinke, C. Straube, J. Meyer, A. Dittler |
Real-world application of low-cost PM sensors in dedusting systems | FILTECH 2023, The Filtration Event |
F. Reinke, J. Meyer, A. Dittler |
Applied geometry optimization of a novel 3D-printed wet-scrubber nozzel with Lattice Boltzmann methods | FILTECH 2022, The Filtration Event |
F. Reinke, M. Novosel, J. Meyer, A. Dittler |
Entwicklung eines Low-Cost PM Sensorenclusters zur Untersuchung des Abscheideverhaltens eines Nassabscheiders | 15. Dresdner Sensor-Symposium 2021 |
F. Reinke, M. Novosel, J. Meyer, A. Dittler |
Versuchsmethodik zur Optimierung der Nassabscheidung feinster Partikeln | Jahrestreffen der ProcessNet-Fachgruppen Gasreinigung und Partikelmesstechnik 2021 |
F. Reinke, M. Novosel, J. Meyer, A. Dittler |