RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)

In order to study the dynamics of a very large monopile offshore wind turbine under emergency shutdown, the DTU 10 MW monopile offshore wind turbine is used as the research object to establish a turbulent wind-wave-earthquake load multi-physics field model with wind and wave correlation and construc...

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Main Authors: NIU KaiLun, YAN YangTian, LI Chun, LI ZhiHao, XUE ShiCheng
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2023-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.025
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author NIU KaiLun
YAN YangTian
LI Chun
LI ZhiHao
XUE ShiCheng
author_facet NIU KaiLun
YAN YangTian
LI Chun
LI ZhiHao
XUE ShiCheng
author_sort NIU KaiLun
collection DOAJ
description In order to study the dynamics of a very large monopile offshore wind turbine under emergency shutdown, the DTU 10 MW monopile offshore wind turbine is used as the research object to establish a turbulent wind-wave-earthquake load multi-physics field model with wind and wave correlation and construction of soil-structure coupling model by p-y curve method, Q-z curve method and Winkler model. The dynamics of the wind turbine under normal operation, shutdown and emergency shutdown were studied. The results show that the wind turbine is most affected by the seismic load under the shutdown condition, and the extreme differences of the forward-backward and lateral displacements of the tower top increase by 249.22% and 1 869.14%, respectively, and the peak shear stress of the support structure increases by 333.33% compared with that without the earthquake. During the emergency shutdown operation, the shear stress of the support structure and the strain energy of the tower were greater than the normal operation at the same time due to the blade pitch effect. The emergency shutdown operation increased the displacement range of the tower top and shifted the vibration center to the direction of turbulent wind flow, and effectively relieved the shear force surge of the support structure and the strain energy gathering in the front and rear of the tower caused by the external load.
format Article
id doaj-art-ef288560c4914d40abf7fd9d75751834
institution Kabale University
issn 1001-9669
language zho
publishDate 2023-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-ef288560c4914d40abf7fd9d757518342025-01-15T02:40:14ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692023-01-0143844636351330RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)NIU KaiLunYAN YangTianLI ChunLI ZhiHaoXUE ShiChengIn order to study the dynamics of a very large monopile offshore wind turbine under emergency shutdown, the DTU 10 MW monopile offshore wind turbine is used as the research object to establish a turbulent wind-wave-earthquake load multi-physics field model with wind and wave correlation and construction of soil-structure coupling model by p-y curve method, Q-z curve method and Winkler model. The dynamics of the wind turbine under normal operation, shutdown and emergency shutdown were studied. The results show that the wind turbine is most affected by the seismic load under the shutdown condition, and the extreme differences of the forward-backward and lateral displacements of the tower top increase by 249.22% and 1 869.14%, respectively, and the peak shear stress of the support structure increases by 333.33% compared with that without the earthquake. During the emergency shutdown operation, the shear stress of the support structure and the strain energy of the tower were greater than the normal operation at the same time due to the blade pitch effect. The emergency shutdown operation increased the displacement range of the tower top and shifted the vibration center to the direction of turbulent wind flow, and effectively relieved the shear force surge of the support structure and the strain energy gathering in the front and rear of the tower caused by the external load.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.025Emergency shutdownOffshore wind turbineSeismic loadWind and wave relatedSoil-structure coupling effect
spellingShingle NIU KaiLun
YAN YangTian
LI Chun
LI ZhiHao
XUE ShiCheng
RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
Jixie qiangdu
Emergency shutdown
Offshore wind turbine
Seismic load
Wind and wave related
Soil-structure coupling effect
title RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
title_full RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
title_fullStr RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
title_full_unstemmed RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
title_short RESEARCH ON THE DYNAMIC CHARACTERISTICS OF OFFSHORE WIND TURBINES UNDER SEISMIC INDUCED EMERGENCY SHUTDOWN (MT)
title_sort research on the dynamic characteristics of offshore wind turbines under seismic induced emergency shutdown mt
topic Emergency shutdown
Offshore wind turbine
Seismic load
Wind and wave related
Soil-structure coupling effect
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.025
work_keys_str_mv AT niukailun researchonthedynamiccharacteristicsofoffshorewindturbinesunderseismicinducedemergencyshutdownmt
AT yanyangtian researchonthedynamiccharacteristicsofoffshorewindturbinesunderseismicinducedemergencyshutdownmt
AT lichun researchonthedynamiccharacteristicsofoffshorewindturbinesunderseismicinducedemergencyshutdownmt
AT lizhihao researchonthedynamiccharacteristicsofoffshorewindturbinesunderseismicinducedemergencyshutdownmt
AT xueshicheng researchonthedynamiccharacteristicsofoffshorewindturbinesunderseismicinducedemergencyshutdownmt