Abstract
The operating range of turbomachines is limited in terms of the low flow rate by instabilities appearing in flow-leading parts of the machinery resulting in the creation of vortices. If the flow is further throttled, stall cells can start to propagate in the impeller at a fraction of the rotor speed. This article presents an investigation of rotating stall at different flow rates in a radial pump using time-resolved particle imaging velocimetry (PIV). This technique was used to investigate the flow field at the same position in every channel of the impeller during several revolutions. Frequency analysis was applied to the measured velocities to calculate the angular speed of the rotating stall in the impeller. The interest of time-resolved PIV to understand rotating stall is demonstrated, as it allows measurement of transient, irregularly appearing flow fields.
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References
Day IJ (1993) Stall inception in axial flow compressors. J Turbomach 115:1–9
Dobat A, Saathoff H, Wulff D (2001) Experimentelle Untersuchungen zur Entstehung von Rotating Stall in Axialventilatoren. In: Ventilatoren: Entwicklung - Planung - Betrieb, VDI Ber. 1591, Braunschweig, Germany, pp 345 – 360
Emmons HW, Pearson CE, Grant HP (1955) Compressor surge and stall propagation. Trans ASME 79:455–469
Escuret JF, Garnier V (1996) Stall inception measurements in a high-speed multistage compressor. J Turbomach 118:690–696
Garnier VH, Epstein AH, Greitzer EM (1991) Rotating waves as a stall inception indication in axial compressors. J Turbomach 113:290–302
Hoess B, Leinhos D, Fottner L (2000) Stall inception in the compressor system of a turbofan engine. J Turbomach 122:32–44
Inoue M (2000) Propagation of multiple short-length-scale stall cells in an axial compressor rotor. J Turbomach 122:45–54
Katz M (2002) Aktive Unterdrückung von Rotating Stall in einem Axialverdichter mit pulsierender Lufteinblasung. Dissertation, TU Darmstadt, Germany
Pap E, Lanzke A (1999) Untersuchung des Strömungsfeldes in einer Flüssigkeit-Gas-Strömung mittels Particle Image Velocimetry. In: Proc 7. Fachtagung Lasermethoden in der Strömungsmeßtechnik, 48.1, Saint-Louis, France, 27–29 September 1999
Pap E, Lanzke A, Kalmar L (2001) Untersuchung des Einflusses des Gasgehaltes auf das Strömungsfeld im radialen Pumpenlaufrad bei der Förderung von Gas-Flüssigkeitsgemisch. GEP, 52:43 - 49, Budapest, Hungary
Place JMM, Howard MA, Cumpsty NA (1996) Simulating the multistage environment for single-stage compressor experiments. J Turbomach 118:706–716
Saxer-Felici HM, Saxer AP, Inderbitzin A, Gyarmathy G (1999) Structure and propagation of rotating stall in a single- and a multi-stage axial compressor. In: International gas turbine and aeroengine congress and exhibition, ASME paper 99-GT-152, Indianapolis, 7–10 June 1999
Sieverding CH, Arts T, Denos R, Brouckaert JF (2000) Measurement techniques for unsteady flows in turbomachines. Exp Fluids 28:285–321
Surek D (2001) Kombination von Radial- und Seitenkanalstufen für Turboverdichter. Forschung im Ingenieurwesen 66:193–210
Ulbricht I (2002) Stabilität des stehenden Ringgitters. Dissertation, TU Berlin, Germany
Wernet MP (2000) Application of DPIV to study both steady state and transient turbomachinery flows. Opt Laser Technol 32:497–525
Acknowledgments
The authors thank Dantec Dynamics GmbH for the technical support which made these experiments possible.
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Krause, N., Zähringer, K. & Pap, E. Time-resolved particle imaging velocimetry for the investigation of rotating stall in a radial pump. Exp Fluids 39, 192–201 (2005). https://doi.org/10.1007/s00348-005-0935-2
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DOI: https://doi.org/10.1007/s00348-005-0935-2