Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions

In order to reveal the relationship between rotor-stator interaction-induced unsteady flow and the shaft vibration of the mixed-flow pump, PIV (particle image velocimetry) and axis orbit experiments were carried out synchronously in a mixed-flow pump under designed flow rate (1.0Qdes) and the partia...

Full description

Bibliographic Details
Main Authors: Wei Li, Leilei Ji, Weidong Shi, Yulu Wang, Ling Zhou, Xiaoping Jiang
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2018/2059784
id doaj-54b4a5ca07b34a15958c6900e3a5d068
record_format Article
spelling doaj-54b4a5ca07b34a15958c6900e3a5d0682020-11-24T22:31:13ZengHindawi LimitedShock and Vibration1070-96221875-92032018-01-01201810.1155/2018/20597842059784Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load ConditionsWei Li0Leilei Ji1Weidong Shi2Yulu Wang3Ling Zhou4Xiaoping Jiang5Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaIn order to reveal the relationship between rotor-stator interaction-induced unsteady flow and the shaft vibration of the mixed-flow pump, PIV (particle image velocimetry) and axis orbit experiments were carried out synchronously in a mixed-flow pump under designed flow rate (1.0Qdes) and the partial load conditions (0.4Qdes and 0.2Qdes). The distribution of the relative velocity and the vorticity in the rotor-stator interaction region at a certain position of the mixed-flow pump impeller was captured; the axis orbit diagram and the time-domain diagram of shaft system were acquired as well. Besides, the waterfall diagrams of the frequency spectrum under different flow rate conditions were compared. The results show that the backflow and the flow separation phenomenon appear in the rotor-stator interaction flow field under the partial load condition, indicating the flow instability. The medium-frequency exciting force and high-frequency exciting force induced by these unstable flows resulting from the rotor-stator interaction are the main factors to intensify the shaft vibration at the power frequency. The rotor-stator interaction under partial load condition is the main reason for the deterioration of shaft system vibration. The 2X frequency also affects the axis orbit in a low level, while other frequencies have less influence on the shaft vibration. The research results can provide the reference and theory instruction for revealing the operating characteristic of mixed-flow pump when it operates under partial load conditions and to reduce or to prevent the deterioration of vibration of shaft system.http://dx.doi.org/10.1155/2018/2059784
collection DOAJ
language English
format Article
sources DOAJ
author Wei Li
Leilei Ji
Weidong Shi
Yulu Wang
Ling Zhou
Xiaoping Jiang
spellingShingle Wei Li
Leilei Ji
Weidong Shi
Yulu Wang
Ling Zhou
Xiaoping Jiang
Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
Shock and Vibration
author_facet Wei Li
Leilei Ji
Weidong Shi
Yulu Wang
Ling Zhou
Xiaoping Jiang
author_sort Wei Li
title Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
title_short Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
title_full Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
title_fullStr Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
title_full_unstemmed Vibration of Shaft System in the Mixed-Flow Pump Induced by the Rotor-Stator Interaction under Partial Load Conditions
title_sort vibration of shaft system in the mixed-flow pump induced by the rotor-stator interaction under partial load conditions
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2018-01-01
description In order to reveal the relationship between rotor-stator interaction-induced unsteady flow and the shaft vibration of the mixed-flow pump, PIV (particle image velocimetry) and axis orbit experiments were carried out synchronously in a mixed-flow pump under designed flow rate (1.0Qdes) and the partial load conditions (0.4Qdes and 0.2Qdes). The distribution of the relative velocity and the vorticity in the rotor-stator interaction region at a certain position of the mixed-flow pump impeller was captured; the axis orbit diagram and the time-domain diagram of shaft system were acquired as well. Besides, the waterfall diagrams of the frequency spectrum under different flow rate conditions were compared. The results show that the backflow and the flow separation phenomenon appear in the rotor-stator interaction flow field under the partial load condition, indicating the flow instability. The medium-frequency exciting force and high-frequency exciting force induced by these unstable flows resulting from the rotor-stator interaction are the main factors to intensify the shaft vibration at the power frequency. The rotor-stator interaction under partial load condition is the main reason for the deterioration of shaft system vibration. The 2X frequency also affects the axis orbit in a low level, while other frequencies have less influence on the shaft vibration. The research results can provide the reference and theory instruction for revealing the operating characteristic of mixed-flow pump when it operates under partial load conditions and to reduce or to prevent the deterioration of vibration of shaft system.
url http://dx.doi.org/10.1155/2018/2059784
work_keys_str_mv AT weili vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
AT leileiji vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
AT weidongshi vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
AT yuluwang vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
AT lingzhou vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
AT xiaopingjiang vibrationofshaftsysteminthemixedflowpumpinducedbytherotorstatorinteractionunderpartialloadconditions
_version_ 1725738215647739904