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research article

Unsteady Flow Numerical Simulations on Internal Energy Dissipation for a Low-Head Centrifugal Pump at Part-Load Operating Conditions

Zhao, Xiaoran  
•
Luo, Yongyao
•
Wang, Zhengwei
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May 2, 2019
Energies

Dredge pumps are usually operated at part-load conditions, in which the low-solidity centrifugal impeller could experience large internal energy dissipation, related to flow separation and vortices. In this study, SST k- and SAS-SST turbulence models were used, in steady and unsteady simulations, for a low-head centrifugal pump with a three-bladed impeller. The main focus of the present work was to investigate the internal energy dissipation in rotating an impeller at part-load operating conditions, related to flow separation and stall. The unsteady nature of these operating conditions was investigated. Performance experiments and transient wall pressure measurements were conducted for validation. A methodology for internal energy dissipation analysis has been proposed; and the unsteady pressure fluctuations were analyzed in the rotating impeller. The internal power losses in the volute and the impeller were mostly found in the centrifugal pump. The rotating stall phenomenon occurred with flow separation and detachment at the part-load operating condition, leading to a dissipation of the internal energy in the impeller. The rotating impeller experienced pressure fluctuations with low frequencies, at part-load operating conditions, while in the design operating condition only experienced rotating frequency.

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Type
research article
DOI
10.3390/en12102013
Web of Science ID

WOS:000471016700192

Author(s)
Zhao, Xiaoran  
Luo, Yongyao
Wang, Zhengwei
Xiao, Yexiang
Avellan, Francois  
Date Issued

2019-05-02

Published in
Energies
Volume

12

Issue

10

Article Number

2013

Subjects

Energy & Fuels

•

Energy & Fuels

•

centrifugal pump

•

internal energy dissipation

•

vortex flow

•

rotating stall

•

rotating stall

•

impeller

•

performance

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMH  
Available on Infoscience
June 28, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/158611
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