Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions

The start-up process of a centrifugal pump as turbine (PAT) under gas–liquid two-phase conditions was simulated based on Fluent, and the evolution mechanism of the internal flow field and the variation law of force characteristics were studied in its start-up process under gas–liquid two-phase condi...

Full description

Bibliographic Details
Main Authors: Baodui Chai, Junhu Yang, Xiaohui Wang
Format: Article
Language:English
Published: MDPI AG 2022-12-01
Series:Actuators
Subjects:
Online Access:https://www.mdpi.com/2076-0825/11/12/370
_version_ 1797461994051207168
author Baodui Chai
Junhu Yang
Xiaohui Wang
author_facet Baodui Chai
Junhu Yang
Xiaohui Wang
author_sort Baodui Chai
collection DOAJ
description The start-up process of a centrifugal pump as turbine (PAT) under gas–liquid two-phase conditions was simulated based on Fluent, and the evolution mechanism of the internal flow field and the variation law of force characteristics were studied in its start-up process under gas–liquid two-phase conditions. The results show that the area with high gas phase concentration corresponds to a strong vortex at the beginning of the start-up. The vortex intensity in the impeller gradually decreases with an increase in rotational speed. The gas volume fraction of the blade suction surface is more significant than that of the blade pressure surface. The higher the inlet gas volume fraction (IGVF) is, the more severely the blade load will fluctuate during the start-up process. As the rotational speed increases, the fluctuation of the blade load gradually weakens, and the maximum load is distributed near the inner edge of the blade after the rotational speed is stable. The periodic unbalanced radial force is produced in the start-up process. From the pure liquid conditions to the gas–liquid two-phase conditions with increasing IGVF, the dominant frequency amplitude of radial force shows a similar trend of decreasing first but then increasing. After the rotational speed tends to be stable, the dominant frequency of radial force is equal to the rotational frequency of the blade. With the increase in rotational speed, the dominant frequency amplitude of axial force decreases gradually. The higher the IGVF, the greater the dominant frequency amplitude of axial force at the same time.
first_indexed 2024-03-09T17:28:17Z
format Article
id doaj.art-ba6d8eaf0a5c41e1bc8ef7efaac7f9ac
institution Directory Open Access Journal
issn 2076-0825
language English
last_indexed 2024-03-09T17:28:17Z
publishDate 2022-12-01
publisher MDPI AG
record_format Article
series Actuators
spelling doaj.art-ba6d8eaf0a5c41e1bc8ef7efaac7f9ac2023-11-24T12:35:22ZengMDPI AGActuators2076-08252022-12-01111237010.3390/act11120370Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase ConditionsBaodui Chai0Junhu Yang1Xiaohui Wang2School of Energy and Power Engineering, Lanzhou University of Technology, Lanzhou 730050, ChinaSchool of Energy and Power Engineering, Lanzhou University of Technology, Lanzhou 730050, ChinaSchool of Energy and Power Engineering, Lanzhou University of Technology, Lanzhou 730050, ChinaThe start-up process of a centrifugal pump as turbine (PAT) under gas–liquid two-phase conditions was simulated based on Fluent, and the evolution mechanism of the internal flow field and the variation law of force characteristics were studied in its start-up process under gas–liquid two-phase conditions. The results show that the area with high gas phase concentration corresponds to a strong vortex at the beginning of the start-up. The vortex intensity in the impeller gradually decreases with an increase in rotational speed. The gas volume fraction of the blade suction surface is more significant than that of the blade pressure surface. The higher the inlet gas volume fraction (IGVF) is, the more severely the blade load will fluctuate during the start-up process. As the rotational speed increases, the fluctuation of the blade load gradually weakens, and the maximum load is distributed near the inner edge of the blade after the rotational speed is stable. The periodic unbalanced radial force is produced in the start-up process. From the pure liquid conditions to the gas–liquid two-phase conditions with increasing IGVF, the dominant frequency amplitude of radial force shows a similar trend of decreasing first but then increasing. After the rotational speed tends to be stable, the dominant frequency of radial force is equal to the rotational frequency of the blade. With the increase in rotational speed, the dominant frequency amplitude of axial force decreases gradually. The higher the IGVF, the greater the dominant frequency amplitude of axial force at the same time.https://www.mdpi.com/2076-0825/11/12/370PATstart-up processgas–liquid two-phaseradial forceaxial force
spellingShingle Baodui Chai
Junhu Yang
Xiaohui Wang
Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
Actuators
PAT
start-up process
gas–liquid two-phase
radial force
axial force
title Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
title_full Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
title_fullStr Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
title_full_unstemmed Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
title_short Force Characteristics of Centrifugal Pump as Turbine during Start-Up Process under Gas–Liquid Two-Phase Conditions
title_sort force characteristics of centrifugal pump as turbine during start up process under gas liquid two phase conditions
topic PAT
start-up process
gas–liquid two-phase
radial force
axial force
url https://www.mdpi.com/2076-0825/11/12/370
work_keys_str_mv AT baoduichai forcecharacteristicsofcentrifugalpumpasturbineduringstartupprocessundergasliquidtwophaseconditions
AT junhuyang forcecharacteristicsofcentrifugalpumpasturbineduringstartupprocessundergasliquidtwophaseconditions
AT xiaohuiwang forcecharacteristicsofcentrifugalpumpasturbineduringstartupprocessundergasliquidtwophaseconditions