基于三脚架基础的海上风力发电机地震离心机建模

Hao Yu, X. Zeng, Xuefei Wang
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引用次数: 14

摘要

海上风能具有清洁、安全、高效等特点,发展迅速。恶劣的海洋环境对海上风力机的基础设计提出了很高的要求。地震荷载是设计阶段应考虑的最重要因素之一。本文对三脚架式风力机物理模型进行了一组地震离心试验。根据记录的加速度、孔隙水压力、侧向位移和沉降分析了风力机和地基土的地震反应。并与以往单桩基础的实测结果进行了比较。结果表明,在地震荷载作用下,三脚架基础具有较好的抗侧向位移和抗结构沉降能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic centrifuge modelling of offshore wind turbine with tripod foundation
The development of offshore wind energy is fast as it is clean, safe, and of high efficiency. The harsh marine environment raises high demand on the foundation design of offshore wind turbine. Earthquake loading is one of the most significant factors which should be considered in the design phase. In this paper, a group of earthquake centrifuge tests were conducted on a physical model of a wind turbine with tripod foundation. The seismic responses of both wind turbine and foundation soil were analyzed in terms of the recorded accelerations, pore water pressures, lateral displacements and settlements. The results were also compared with those measured in the previous research on monopile foundation. It is demonstrated that the tripod foundation can provide better resistance in the lateral displacement and structural settlement under earthquake loading.
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