Florian Zenger

Scopus Author ID: 57056236500



Organisation


Lehrstuhl für Prozessmaschinen und Anlagentechnik


Publications (Download BibTeX)

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Grabinger, J., Kaltenbacher, M., Becker, S., & Zenger, F. (2018). Efficient prediction of flow-induced sound sources and emission from a HVAC blower. SAE Technical Papers. https://dx.doi.org/10.4271/2018-01-1518
Krömer, F., Renz, A., & Becker, S. (2018). Experimental investigation of sound reduction by leading edge serrations in axial fans. Aiaa Journal. https://dx.doi.org/10.2514/1.J056355
Krömer, F., & Becker, S. (2018). Experimental investigation of the off-design sound emission of low-pressure axial fans with different fan blade skew. In Proceedings of 11th European Congress and Exposition on Noise Control Engineering (Euronoise). Crete, Greece.
Krömer, F., & Becker, S. (2018). Experimental investigation of the sound reduction by leading edge serrations on a flat-plate axial fan. In Proceedings of 24th AIAA/CEAS Aeroacoustics Conference. Atlanta, USA.
Riedel, J., Krömer, F., & Becker, S. (2018). Experimentelle Untersuchung von strömungsinduziertem Schall an Hörgeräten. München, Germany.
Krömer, F., Müller, J., & Becker, S. (2018). Investigation of aeroacoustic properties of low-pressure axial fans with different blade stacking. Aiaa Journal. https://dx.doi.org/10.2514/1.J056324
Krömer, F., & Becker, S. (2018). Reduzierung der Schallemission von Axialventilatoren durch Vorderkantenmodifikationen. München, Germany.
Osterziel, J., Krömer, F., Winter, P., & Lerch, R. (2018). Schallabstrahlung von überströmten ebenen Ein- und Mehrplattensystemen in Kavitäten. München, Germany.
Krömer, F. (2018). Sound emission of low-pressure axial fans under distorted inflow conditions. FAU University Press.
Krömer, F., Westermeier, M., Renz, A., & Becker, S. (2018). Sound reduction by leading edge serrations in low-pressure axial fans. In Proceedings of the International Conference on Fan Noise, Technology and Numerical Methods. Darmstadt, Germany.

Last updated on 2019-16-03 at 22:53