Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners

To predict the resonance characteristics of hydraulic machinery, it is necessary to accurately calculate the natural modes of the runners in the operating environment. However, in the existing research, the boundary conditions of the numerical modal analysis of the runner were not unified. In this p...

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Main Authors: Dianhai Liu, Xiang Xia, Jing Yang, Zhengwei Wang
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/9/4/434
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spelling doaj-eced13961ca14026a1c6768f275cfd832021-04-17T23:03:11ZengMDPI AGJournal of Marine Science and Engineering2077-13122021-04-01943443410.3390/jmse9040434Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of RunnersDianhai Liu0Xiang Xia1Jing Yang2Zhengwei Wang3Technology Center State Grid XinYuan Company Ltd., Beijing 100761, ChinaCollege of Water Resources and Civil Engineering, China Agricultural University, Beijing 100083, ChinaTechnology Center State Grid XinYuan Company Ltd., Beijing 100761, ChinaDepartment of Energy and Power Engineering, Tsinghua University, Beijing 100084, ChinaTo predict the resonance characteristics of hydraulic machinery, it is necessary to accurately calculate the natural modes of the runners in the operating environment. However, in the existing research, the boundary conditions of the numerical modal analysis of the runner were not unified. In this paper, numerical modal analysis of a prototype Francis pump turbine runner was carried out using the acoustic–structure coupling method. The results of three different constraints were compared. The influence of the energy loss on the chamber wall on the natural modes of the runner was studied by the absorption boundary. The results show that the constraint condition (especially the rotating shaft) has significant impacts on the torsional mode, the radial mode, the 1 nodal-diameter mode, and the 0 nodal-circle mode, and the maximum differences in the natural frequencies under different conditions are 69.3%, 56.4%, 35.1%, and 9.4%, respectively. The change of the natural frequencies is closely related to the modal shapes. On the other hand, the energy loss on the wall mainly affects the nodal-circle modes, and the influence on other modes is negligible. The results can provide references for the design and resonance characteristics analysis of hydraulic machinery runners.https://www.mdpi.com/2077-1312/9/4/434hydraulic machinery runnerwet modal analysisacoustic–structure couplingboundary condition
collection DOAJ
language English
format Article
sources DOAJ
author Dianhai Liu
Xiang Xia
Jing Yang
Zhengwei Wang
spellingShingle Dianhai Liu
Xiang Xia
Jing Yang
Zhengwei Wang
Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
Journal of Marine Science and Engineering
hydraulic machinery runner
wet modal analysis
acoustic–structure coupling
boundary condition
author_facet Dianhai Liu
Xiang Xia
Jing Yang
Zhengwei Wang
author_sort Dianhai Liu
title Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
title_short Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
title_full Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
title_fullStr Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
title_full_unstemmed Effect of Boundary Conditions on Fluid–Structure Coupled Modal Analysis of Runners
title_sort effect of boundary conditions on fluid–structure coupled modal analysis of runners
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2021-04-01
description To predict the resonance characteristics of hydraulic machinery, it is necessary to accurately calculate the natural modes of the runners in the operating environment. However, in the existing research, the boundary conditions of the numerical modal analysis of the runner were not unified. In this paper, numerical modal analysis of a prototype Francis pump turbine runner was carried out using the acoustic–structure coupling method. The results of three different constraints were compared. The influence of the energy loss on the chamber wall on the natural modes of the runner was studied by the absorption boundary. The results show that the constraint condition (especially the rotating shaft) has significant impacts on the torsional mode, the radial mode, the 1 nodal-diameter mode, and the 0 nodal-circle mode, and the maximum differences in the natural frequencies under different conditions are 69.3%, 56.4%, 35.1%, and 9.4%, respectively. The change of the natural frequencies is closely related to the modal shapes. On the other hand, the energy loss on the wall mainly affects the nodal-circle modes, and the influence on other modes is negligible. The results can provide references for the design and resonance characteristics analysis of hydraulic machinery runners.
topic hydraulic machinery runner
wet modal analysis
acoustic–structure coupling
boundary condition
url https://www.mdpi.com/2077-1312/9/4/434
work_keys_str_mv AT dianhailiu effectofboundaryconditionsonfluidstructurecoupledmodalanalysisofrunners
AT xiangxia effectofboundaryconditionsonfluidstructurecoupledmodalanalysisofrunners
AT jingyang effectofboundaryconditionsonfluidstructurecoupledmodalanalysisofrunners
AT zhengweiwang effectofboundaryconditionsonfluidstructurecoupledmodalanalysisofrunners
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