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海上风电基础结构动力分析
引用本文:李炜,郑永明,陆飞,罗金平,姜贞强,郇彩云.海上风电基础结构动力分析[J].海洋通报,2012,31(1):67-73.
作者姓名:李炜  郑永明  陆飞  罗金平  姜贞强  郇彩云
作者单位:中国水电顾问集团华东勘测设计研究院,浙江杭州,310014
基金项目:中国水电顾问集团华东勘测设计研究院院立项课题:海上风电基础结构关键技术研究(KY2010-02-19)海上风电基础结构动力响应及疲劳寿命分析(KY2011-02-07-02)
摘    要:针对单桩、三桩、四桩导管架3种常规海上风电基础结构型式动力特性展开研究。以模态分析为基础,获得结构整体固有频率和振型;进而综合运用谐响应分析、瞬态分析、谱分析等方法,对基础结构在简谐荷载、冲击荷载、地震荷载及波浪荷载作用下的动力响应特性进行了数值模拟计算和分析。结果显示:本设计中的单桩、三桩、四桩基础结构刚度依次增大,一阶固有频率递增;对于相同的动力荷载激励,基础结构动力响应递减;基础结构设计中既要保证结构具有足够的刚度以满足荷载作用下的变形控制要求,还要使基础刚度适中以避免共振。为海上风电基础结构动力分析提供了参考。

关 键 词:海上风电  动力响应  模态  谐响应  瞬态  谱分析

Dynamic analysis of foundational structure for offshore wind turbine
LI Wei,ZHENG Yong-ming,LU Fei,LUO Jin-ping,JIANG Zhen-qiang and HUAN Cai-yun.Dynamic analysis of foundational structure for offshore wind turbine[J].Marine Science Bulletin,2012,31(1):67-73.
Authors:LI Wei  ZHENG Yong-ming  LU Fei  LUO Jin-ping  JIANG Zhen-qiang and HUAN Cai-yun
Institution:HYDROCHINA Huadong Engineering Corporation, Hangzhou 310014, China;HYDROCHINA Huadong Engineering Corporation, Hangzhou 310015, China;HYDROCHINA Huadong Engineering Corporation, Hangzhou 310016, China;HYDROCHINA Huadong Engineering Corporation, Hangzhou 310017, China;HYDROCHINA Huadong Engineering Corporation, Hangzhou 310018, China;HYDROCHINA Huadong Engineering Corporation, Hangzhou 310019, China
Abstract:The dynamic characters of three common foundation frames (monopile, tripod and jacket) for offshore wind turbine are investigated. The natural frequencies and modes of structures are calculated through mode analysis. Harmonic, transient and spectrum analyses are used, and the dynamic responses of the foundational structures under harmonic load, impact load, earthquake load and wave load are simulated and analyzed. It reveals that the first order natural frequencies of the present three foundations (monopile, tripod and jacket) increase with the increasing of their structure stiffness, and their dynamic responses decrease for the same dynamic loads. It is necessary and important to make sure that the foundation stiffness is enough to control the structure deformation and is reasonable to avoid resonance. The research results will supply valuable references for designers and constructors.
Keywords:offshore wind turbines  dynamic response  modal analysis  harmonic response  transient analysis  spectrum analysis
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