Investigation on performance of a centrifugal pump with multi-malfunction

Herein, the performance and inner flow characteristics of a single-stage single-suction centrifugal pump with multi-malfunctions (broken blade and seal ring abrasion) were determined through tests and numerical simulation. The vibration, inner flow, pressure, and radial force of the centrifugal pump...

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Main Authors: Minggao Tan, Youdong Lu, Xianfang Wu, Houlin Liu, Xiao Tian
Format: Article
Language:English
Published: SAGE Publishing 2021-06-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/1461348420942349
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spelling doaj-db86686d7055411b96951ab0e266c7ab2021-06-25T02:33:47ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462021-06-014010.1177/1461348420942349Investigation on performance of a centrifugal pump with multi-malfunctionMinggao TanYoudong LuXianfang WuHoulin LiuXiao TianHerein, the performance and inner flow characteristics of a single-stage single-suction centrifugal pump with multi-malfunctions (broken blade and seal ring abrasion) were determined through tests and numerical simulation. The vibration, inner flow, pressure, and radial force of the centrifugal pump were analyzed in detail. Compared with those of a normal pump, the head and efficiency of the pump with multi-malfunctions decreased by 10.56 and 10.09%, respectively, under the design flow rate. The general vibration level most significantly increased at the foot of the pump. The axial passing frequency of each measuring point increased in varying degrees, and new characteristic frequencies appeared at 5, 2, and 3 axial passing frequencies. The simulation results showed that in the pump with multi-functions, the pressure gradient near the broken blade was distinctly reduced, and the periodicity of the impeller radial force became weaker and more concentrated, thus exhibiting different performance than the normal pump. The peak-to-peak value of the pressure pulsation near the tongue increased by 8.5%, whereas that at the pump outlet decreased by 6.8%. Moreover, a vortex appeared at the inlet and another at the middle of the impeller, and the low-pressure zone near the impeller inlet expanded to the middle of the impeller. The results of this work can be used as reference for pump fault diagnosis.https://doi.org/10.1177/1461348420942349
collection DOAJ
language English
format Article
sources DOAJ
author Minggao Tan
Youdong Lu
Xianfang Wu
Houlin Liu
Xiao Tian
spellingShingle Minggao Tan
Youdong Lu
Xianfang Wu
Houlin Liu
Xiao Tian
Investigation on performance of a centrifugal pump with multi-malfunction
Journal of Low Frequency Noise, Vibration and Active Control
author_facet Minggao Tan
Youdong Lu
Xianfang Wu
Houlin Liu
Xiao Tian
author_sort Minggao Tan
title Investigation on performance of a centrifugal pump with multi-malfunction
title_short Investigation on performance of a centrifugal pump with multi-malfunction
title_full Investigation on performance of a centrifugal pump with multi-malfunction
title_fullStr Investigation on performance of a centrifugal pump with multi-malfunction
title_full_unstemmed Investigation on performance of a centrifugal pump with multi-malfunction
title_sort investigation on performance of a centrifugal pump with multi-malfunction
publisher SAGE Publishing
series Journal of Low Frequency Noise, Vibration and Active Control
issn 1461-3484
2048-4046
publishDate 2021-06-01
description Herein, the performance and inner flow characteristics of a single-stage single-suction centrifugal pump with multi-malfunctions (broken blade and seal ring abrasion) were determined through tests and numerical simulation. The vibration, inner flow, pressure, and radial force of the centrifugal pump were analyzed in detail. Compared with those of a normal pump, the head and efficiency of the pump with multi-malfunctions decreased by 10.56 and 10.09%, respectively, under the design flow rate. The general vibration level most significantly increased at the foot of the pump. The axial passing frequency of each measuring point increased in varying degrees, and new characteristic frequencies appeared at 5, 2, and 3 axial passing frequencies. The simulation results showed that in the pump with multi-functions, the pressure gradient near the broken blade was distinctly reduced, and the periodicity of the impeller radial force became weaker and more concentrated, thus exhibiting different performance than the normal pump. The peak-to-peak value of the pressure pulsation near the tongue increased by 8.5%, whereas that at the pump outlet decreased by 6.8%. Moreover, a vortex appeared at the inlet and another at the middle of the impeller, and the low-pressure zone near the impeller inlet expanded to the middle of the impeller. The results of this work can be used as reference for pump fault diagnosis.
url https://doi.org/10.1177/1461348420942349
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AT youdonglu investigationonperformanceofacentrifugalpumpwithmultimalfunction
AT xianfangwu investigationonperformanceofacentrifugalpumpwithmultimalfunction
AT houlinliu investigationonperformanceofacentrifugalpumpwithmultimalfunction
AT xiaotian investigationonperformanceofacentrifugalpumpwithmultimalfunction
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