A First Analysis of Flow Field Hysteresis in a Pump Impeller

Author:

Kaupert K. A.1,Holbein P.1,Staubli T.1

Affiliation:

1. Turbomachinery Laboratory, ETH Swiss Federal Institute of Technology Zurich, CH-8092 Zurich, Switzerland

Abstract

The measured pump pressure discharge characteristic for a high specific speed radial pump (ωs = 1.7) reveals distinct discontinuities in part load operation. These pressure discontinuities occur at different threshold volume fluxes when increasing or decreasing the pump discharge and make up a hysteresis loop. The pump impeller characteristic was evaluated experimentally and numerically by taking the difference between the integrated impeller outlet and impeller inlet total pressure. The experimental and numerical characteristics agree well including the volume flux location and magnitude of the pressure discontinuities in the hysteresis loop. For volume fluxes within the hysteresis loop two stable well converged flows were calculated numerically. The numerical calculations were made on coarse and fine grids using commercially available software with and without the impeller clearance leakage flow. Further experimental and numerical comparisons are made at the impeller inlet/outlet with emphasis on the changing flow field in the hysteresis loop flow regime and its coupling to the onset of reverse flow zones. This combined application of numerical and experimental tools provides insight for the hysteresis flow field of a pump impeller characteristic.

Publisher

ASME International

Subject

Mechanical Engineering

Reference16 articles.

1. ASC, (1994) TASCflow Documentation Version 2.3, Advanced Scientific Computing LDT, Waterloo, Canada.

2. Breugelmans, F. A. E., and Sen, M., 1982, “Prerotation and Fluid Recirculation in the Suction Pipe of Centrifugal Pumps,” Proceedings of the 11th Turbomachinery Symposium.

3. Fraser, W. H., 1982, Recirculation in Centrifugal Pumps, World Pumps, pp. 227–235.

4. Guarga, R., Fanelli, M. A., and Nishi, M., 1991, “System Instability Caused by Hydraulic Machinery,” Vibration and Oscillation of Hydraulic Turbomachinery, Ohashi, H., ed., Avebury Technical.

5. Gu¨lich, J. F., 1995, “Untersuchung zur sattelfo¨rmigen Kennlinien-Instabilita¨t von Kreiselpumpen,” Forschung im Ingenieurwesen, Bd 61, Nr 4.

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