JOURNAL ARTICLE

Numerical investigation of a centrifugal pump running in reverse mode

Joaquín FernándezRaúl BarrioEduardo BlancoJorge ParrondoAlfonso C. Marcos-Romero

Year: 2009 Journal:   Proceedings of the Institution of Mechanical Engineers Part A Journal of Power and Energy Vol: 224 (3)Pages: 373-381   Publisher: SAGE Publishing

Abstract

This article reports a work on the three-dimensional flow simulation in a centrifugal pump operating in reverse mode. The simulations were carried out with the commercial code Fluent using unsteady flow calculations together with a sliding mesh technique. Hence, it was possible to account for the effect of blade—tongue interactions on the local flow. The numerical predictions were compared with the experimentally determined performance characteristics and also with the static pressure distribution obtained around the periphery of the impeller. Once validated, the numerical model was used to investigate the global flow. Additionally, the total radial force (steady and unsteady components) on the impeller for a number of flowrates was estimated. It was found that the unsteady radial force (peak to peak) varied between 24 and 54.3 per cent of the steady value within the considered flow interval. The maximum force amplitude was reached when the trailing edge of one blade (pressure side) was located 3° downstream of the tongue tip.

Keywords:
Impeller Centrifugal pump Mechanics Fluent Flow (mathematics) Trailing edge Leading edge Amplitude Volute Computer simulation Work (physics) Static pressure Materials science Physics Mechanical engineering Engineering Optics

Metrics

38
Cited By
1.30
FWCI (Field Weighted Citation Impact)
11
Refs
0.80
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Cavitation Phenomena in Pumps
Physical Sciences →  Engineering →  Mechanics of Materials
Turbomachinery Performance and Optimization
Physical Sciences →  Engineering →  Aerospace Engineering
Vibration and Dynamic Analysis
Physical Sciences →  Engineering →  Control and Systems Engineering

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