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Development of Seismic Demand for Chang-Bin Offshore Wind Farm in Taiwan Strait

机译:台湾海峡长滨海上风电场的地震需求发展

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Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind farms are softer than those in Europe. To ensure safety and stability of the offshore wind turbine supporting structures, it is important to assess the offshore wind farms seismic forces reasonably. In this paper, the relevant seismic and geological data are obtained for Chang-Bin offshore wind farm in Taiwan Strait, the probabilistic seismic hazard analysis (PSHA) is carried out, and the first uniform hazard response spectrum for Chang-Bin offshore wind farm is achieved. Compared with existing design response spectrum in the local regulation, this site-specific seismic hazard analysis has influence on the seismic force considered in the design of supporting structures and therefore affects the cost of the supporting structures. The results show that a site-specific seismic hazard analysis is required for high seismic area. The paper highlights the importance of seismic hazard analysis to assess the offshore wind farms seismic forces. The follow-up recommendations and research directions are given for Taiwan’s offshore wind turbine supporting structures under seismic force considerations.
机译:台湾位于太平洋地震带上,台湾海上风电场的土壤条件比欧洲要软。为了确保海上风力涡轮机支撑结构的安全性和稳定性,合理评估海上风力发电场的地震力很重要。本文获得了台湾海峡长滨海上风电场的相关地震和地质数据,进行了概率地震危险性分析(PSHA),并得出了长滨海上风电场的第一个统一危险响应谱。实现。与当地法规中现有的设计响应谱相比,针对特定地点的地震危险性分析会影响支撑结构设计中考虑的地震力,因此会影响支撑结构的成本。结果表明,高地震区需要进行特定地点的地震危害分析。本文强调了地震危险性分析对评估海上风电场地震力的重要性。在考虑地震力的情况下,针对台湾的海上风机支撑结构给出了后续建议和研究方向。

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