Dipl.-Ing. Julius-Alexander Nöpel
Wissenschaftlicher Mitarbeiter
NameDipl.-Ing. Julius-Alexander Nöpel
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Professur für Strömungsmechanik
Professur für Strömungsmechanik
Visiting address:
Zeuner-Bau, ZEU 153 George-Bähr-Str. 3c
01069 Dresden
GPS: N 51° 01.754' E 013° 43.515'
Beruflicher Werdegang
| seit Okt 2017 | Wissenschaftlicher Mitarbeiter, ISM der TU Dresden | 
| 2017 | Diplom Maschinenbau an der TU Dresden, Vertiefungsrichtung: Luft- und Raumfahrttechnik | 
Projekt
NEPTUN: Netzwerkbasiertes Entwicklungsprojekt für eine Technologie zum Abbau von Medikamenten- und Hormonrückständen in Wasser unter Nutzung von Kavitation
Lehre
Übungen
Strömungsmechanik (SS)
Strömungsmesstechnik [SS]
Strömungssimulation für Ingenieuranwendungen (WS)
Publikationen
2025
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                                    Experimental Study of Dye Degradation in a Single-Jet Cavitation System, 4 Apr 2025, In: Processes. 13, 4, 1088Electronic (full-text) versionResearch output: Contribution to journal > Research article
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                                    Impact of outgassing on dye degradation in jet cavitation, 5 Feb 2025, In: Chemical engineering science. 302 (2025), 13 p., 120937Electronic (full-text) versionResearch output: Contribution to journal > Research article
 
2023
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                                    Some aspects of similarity and transferability for processes with hydrodynamic cavitation, 22 Sep 2023Research output: Contribution to conferences > Presentation slides
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                                    Experimental evidences of radicals production by hydrodynamic cavitation: a short review, 2023, In: C. R. Chim.. 26, p. 157-166, 10 p.Electronic (full-text) versionResearch output: Contribution to journal > Review article
 
2022
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                                    Detection and evaluation of single bubble collisions using focused shadowgraphy, Sep 2022Electronic (full-text) versionResearch output: Contribution to conferences > Paper
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                                    Hydrodynamic cavitation for micropollutant degradation in water – Correlation of bisphenol A degradation with fluid mechanical properties, Feb 2022, In: Ultrasonics Sonochemistry. 83, p. 105950, 1 p., 105950Electronic (full-text) versionResearch output: Contribution to journal > Research article
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                                    Characterization of air outgassing process in dye degradation exper-iments using hydrodynamic jet cavitation, 2022Research output: Contribution to conferences > Paper
 
2021
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                                    Experimental Investigation of Cavitation in a Jet Regarding Process Optimization, 2021Research output: Contribution to conferences > Paper
 
2019
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                                    Velocity measurement of a free jet in water with shear layer cavitation, 2019Research output: Contribution to conferences > Paper
 
2018
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                                    Experimental investigation of the bubble distribution and chemical reactions induced by hydrodynamic cavitation inside a reactor-a preliminary study, 2018Electronic (full-text) versionResearch output: Contribution to conferences > Paper