PIV Measurements in the Impeller and the Vaneless Diffuser of a Radial Flow Pump in Design and Off-Design Operating Conditions

Author:

Wuibaut G.1,Bois G.1,Dupont P.2,Caignaert G.1,Stanislas M.2

Affiliation:

1. Laboratoire de Mecanique de Lille, (URA CNRS 1441), ENSAM, 8, Bd Louis IV, 59046 Lille, Cedex, France

2. Laboratoire de Mecanique de Lille, (URA CNRS 1441), Ecole Centrale de Lille, BP 48, 59651 Villeneuve d’Ascq Cedex, France

Abstract

This paper presents and discusses the results of an experimental program that has been made on an air test rig of a radial flow pump. The tested impeller is the so-called SHF impeller. Many experimental data have already been produced (tests in air and in water) on that geometry and these results are still used as databases for the validation of CFD codes. For the present study, an air test rig has been chosen for optical access facilities and measurements were realized with a vaneless diffuser. The 2D Particle Image Velocimetry technique has been used and measurements of flow velocities have been made simultaneously in the outer part of the impeller and in the vaneless diffuser. Measurements have been realized in five planes, in the hub to shroud direction, for various relative flow rates (design and off-design operating conditions). First, the paper focus on the evolutions of the phase averaged velocity charts in the impeller and the diffuser. Limitations of the phase averaging technique clearly appear in the very low partial flow rates and this will be related to previous pressure measurements analysis establishing the occurrence of rotating stall within the impeller for such operating conditions. The paper also proposes an analysis of the rates of fluctuations of the velocity charts and the evolutions in the various measuring planes as the relative flow rate becomes lower.

Publisher

ASME International

Subject

Mechanical Engineering

Reference18 articles.

1. Barrand, J. P., Caignaert, G., Canavelis, R., and Guiton, P., 1984, “Experimental Determination of the Reverse Flow Onset in a Centrifugal Impeller,” Proceedings of the First International Pump Symposium. Texas A&M University.

2. Barrand, J. P., Caignaert, G., Graeser, J. E., and Rieutord, E., 1985, “Synthe`se de Re´sultats an Air et en eau en vue de la De´tection des De´bits Critiques de Recirculation a` l’entre´e et a` la Sortie de la roue d’une Pompe Centrifuge,” La Houille Blanche No. 5, pp. 405–420.

3. Caignaert, G., Desmet, B., Maroufi, S., and Barrand, J. P., 1985, “Velocities and Pressure Measurements and Analysis at the Outlet of a Centrifugal Pump,” ASME Paper 85-WA/FE-6.

4. Caignaert, G., Barrand, J. P, and Desmet, B., 1988, “Recirculation at Impeller Inlet and Outlet of a Centrifugal Pump,” Proceedings of the Institution of Mechanical Engineers, ImechE 1988-5, paper C337-88, pp. 61–68.

5. Caignaert, G., and Morel, P., 1995, “Mean Pressure Measurements Within a Centrifugal Pump Impeller at Partial Flow Rates,” VDI Berichte, 1186, pp. 405–419.

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