Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station

Research on the safety of powerhouse in a hydropower station is mostly concentrated on the vibration of machinery structure and concrete structure within a single unit. However, few studies have been focused on the vibration transmission among units. Due to the integrity of the powerhouse and the in...

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Main Authors: Jijian Lian, Hongzhen Wang, Haijun Wang
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/11/11/3015
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spelling doaj-48c3df05869d4f4c898cc76f1f66e1af2020-11-25T00:15:27ZengMDPI AGEnergies1996-10732018-11-011111301510.3390/en11113015en11113015Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower StationJijian Lian0Hongzhen Wang1Haijun Wang2State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, ChinaState Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, ChinaState Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, ChinaResearch on the safety of powerhouse in a hydropower station is mostly concentrated on the vibration of machinery structure and concrete structure within a single unit. However, few studies have been focused on the vibration transmission among units. Due to the integrity of the powerhouse and the interaction, it is necessary to study the vibration transmission mechanism of powerhouse structure among units. In this paper, field structural vibration tests are conducted in an underground powerhouse of a hydropower station on Yalong River. Additionally, the simplified mechanical models are established to explain the transmission mechanism theoretically. Moreover, a complementary finite element (FE) model is built to replicate the testing conditions for comprehensive analysis. The field tests results show that: (1) the transmission of lateral-river vibration is greater than those of longitude-river vibration and vertical vibration; (2) the vibration transmission of the vibrations that is caused by the low frequency tail fluctuation is basically equal to that of the vibrations caused by rotation of hydraulic generator. The transmission mechanism is demonstrated by the simplified mechanical models and is verified by the FE results. This study can provide guidance for further research on the vibration of underground powerhouse structure.https://www.mdpi.com/1996-1073/11/11/3015vibration transmission mechanismunderground powerhouselateral-river vibrationlow frequency tail fluctuationrotation of hydraulic generator
collection DOAJ
language English
format Article
sources DOAJ
author Jijian Lian
Hongzhen Wang
Haijun Wang
spellingShingle Jijian Lian
Hongzhen Wang
Haijun Wang
Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
Energies
vibration transmission mechanism
underground powerhouse
lateral-river vibration
low frequency tail fluctuation
rotation of hydraulic generator
author_facet Jijian Lian
Hongzhen Wang
Haijun Wang
author_sort Jijian Lian
title Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
title_short Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
title_full Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
title_fullStr Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
title_full_unstemmed Study on Vibration Transmission among Units in Underground Powerhouse of a Hydropower Station
title_sort study on vibration transmission among units in underground powerhouse of a hydropower station
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-11-01
description Research on the safety of powerhouse in a hydropower station is mostly concentrated on the vibration of machinery structure and concrete structure within a single unit. However, few studies have been focused on the vibration transmission among units. Due to the integrity of the powerhouse and the interaction, it is necessary to study the vibration transmission mechanism of powerhouse structure among units. In this paper, field structural vibration tests are conducted in an underground powerhouse of a hydropower station on Yalong River. Additionally, the simplified mechanical models are established to explain the transmission mechanism theoretically. Moreover, a complementary finite element (FE) model is built to replicate the testing conditions for comprehensive analysis. The field tests results show that: (1) the transmission of lateral-river vibration is greater than those of longitude-river vibration and vertical vibration; (2) the vibration transmission of the vibrations that is caused by the low frequency tail fluctuation is basically equal to that of the vibrations caused by rotation of hydraulic generator. The transmission mechanism is demonstrated by the simplified mechanical models and is verified by the FE results. This study can provide guidance for further research on the vibration of underground powerhouse structure.
topic vibration transmission mechanism
underground powerhouse
lateral-river vibration
low frequency tail fluctuation
rotation of hydraulic generator
url https://www.mdpi.com/1996-1073/11/11/3015
work_keys_str_mv AT jijianlian studyonvibrationtransmissionamongunitsinundergroundpowerhouseofahydropowerstation
AT hongzhenwang studyonvibrationtransmissionamongunitsinundergroundpowerhouseofahydropowerstation
AT haijunwang studyonvibrationtransmissionamongunitsinundergroundpowerhouseofahydropowerstation
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