Dynamic Instability Analysis of a Double-Blade Centrifugal Pump

The flow instability of a double-blade centrifugal pump is more serious due to its special design feature with two blades and large flow passages. The dynamic instabilities and pressure pulsations can affect the pump performance and operating lifetime. In the present study, a numerical investigation...

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Main Authors: Denghao Wu, Songbao Yao, Renyong Lin, Yun Ren, Peijian Zhou, Yunqing Gu, Jiegang Mou
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/17/8180
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spelling doaj-3808507763d64e0ba0be28cd898fcc5b2021-09-09T13:39:41ZengMDPI AGApplied Sciences2076-34172021-09-01118180818010.3390/app11178180Dynamic Instability Analysis of a Double-Blade Centrifugal PumpDenghao Wu0Songbao Yao1Renyong Lin2Yun Ren3Peijian Zhou4Yunqing Gu5Jiegang Mou6College of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018, ChinaZhejiang Nanyuan Pump Co., Ltd., Huzhou 313219, ChinaZhejiang Leo Group Co., Ltd., Taizhou 317511, ChinaZhijiang College, Zhejiang University of Technology, Shaoxing 312030, ChinaCollege of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018, ChinaCollege of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018, ChinaCollege of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018, ChinaThe flow instability of a double-blade centrifugal pump is more serious due to its special design feature with two blades and large flow passages. The dynamic instabilities and pressure pulsations can affect the pump performance and operating lifetime. In the present study, a numerical investigation of unsteady flow and time variation of pressure within a complete double-blade centrifugal pump was carried out. The time domain and frequency domain of pressure pulsations were extracted at 16 monitoring locations covering the important regions to analyze the internal flow instabilities of the pump model. The frequency spectra of pressure pulsations were decomposed into Strouhal number dependent functions. This led to the conclusion that the blade passing frequency (BPF) related vibrations are exclusively flow-induced. Large vortices were observed in the flow passages of the pump at low flow rate. It is noted that high vorticity magnitude occurred in the vicinities of the blade trailing edge and tongue of the volute, due to the rotor-stator interaction between impeller and volute.https://www.mdpi.com/2076-3417/11/17/8180flow instabilitydouble-blade centrifugal pumppressure pulsationvibrationcomputational fluid dynamics (CFD)
collection DOAJ
language English
format Article
sources DOAJ
author Denghao Wu
Songbao Yao
Renyong Lin
Yun Ren
Peijian Zhou
Yunqing Gu
Jiegang Mou
spellingShingle Denghao Wu
Songbao Yao
Renyong Lin
Yun Ren
Peijian Zhou
Yunqing Gu
Jiegang Mou
Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
Applied Sciences
flow instability
double-blade centrifugal pump
pressure pulsation
vibration
computational fluid dynamics (CFD)
author_facet Denghao Wu
Songbao Yao
Renyong Lin
Yun Ren
Peijian Zhou
Yunqing Gu
Jiegang Mou
author_sort Denghao Wu
title Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
title_short Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
title_full Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
title_fullStr Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
title_full_unstemmed Dynamic Instability Analysis of a Double-Blade Centrifugal Pump
title_sort dynamic instability analysis of a double-blade centrifugal pump
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2021-09-01
description The flow instability of a double-blade centrifugal pump is more serious due to its special design feature with two blades and large flow passages. The dynamic instabilities and pressure pulsations can affect the pump performance and operating lifetime. In the present study, a numerical investigation of unsteady flow and time variation of pressure within a complete double-blade centrifugal pump was carried out. The time domain and frequency domain of pressure pulsations were extracted at 16 monitoring locations covering the important regions to analyze the internal flow instabilities of the pump model. The frequency spectra of pressure pulsations were decomposed into Strouhal number dependent functions. This led to the conclusion that the blade passing frequency (BPF) related vibrations are exclusively flow-induced. Large vortices were observed in the flow passages of the pump at low flow rate. It is noted that high vorticity magnitude occurred in the vicinities of the blade trailing edge and tongue of the volute, due to the rotor-stator interaction between impeller and volute.
topic flow instability
double-blade centrifugal pump
pressure pulsation
vibration
computational fluid dynamics (CFD)
url https://www.mdpi.com/2076-3417/11/17/8180
work_keys_str_mv AT denghaowu dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT songbaoyao dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT renyonglin dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT yunren dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT peijianzhou dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT yunqinggu dynamicinstabilityanalysisofadoublebladecentrifugalpump
AT jiegangmou dynamicinstabilityanalysisofadoublebladecentrifugalpump
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