首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >COMPARATIVE STUDY OF WAVE RUN-UP AND SLAMMING OCCURRENCE FOR MULTI-UNIT FLOATING OFFSHORE WIND TURBINE PLATFORM: NUMERICAL SIMULATION VS. MODEL TEST
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COMPARATIVE STUDY OF WAVE RUN-UP AND SLAMMING OCCURRENCE FOR MULTI-UNIT FLOATING OFFSHORE WIND TURBINE PLATFORM: NUMERICAL SIMULATION VS. MODEL TEST

机译:多单位浮动海上风力涡轮机平台波延伸和撞击的比较研究:数值模拟与模型测试

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摘要

A hybrid offshore renewable energy platform with multiple wind turbines and wave energy converters in a square-type host structure is proposed by Korea Research Institute of Ships and Ocean Engineering (KRISO). In this paper, we conduct a comparative study of wave run-up and slamming occurrence for the numerical simulations and physical 1:50 experiments. This hybrid renewable energy platform comprises a square frame structure with slender support structures as well as spread mooring system. Considering relative kinematics of the three-dimensional structure to waves especially for random seas, it may undergo not only vertical but also horizontal slamming impacts. Following the investigation of the wave run-up (airgap), the three-dimensional slamming occurrence is examined. Both regular waves and random waves are considered. The system identification of the numerical model is checked against the measured data from static-offset and free-decay tests. Following the systematic comparison between the experimental and numerical data, maximum wave run-up and the worst slamming occurrence in terms of the relative velocities are identified.
机译:韩国船舶和海洋工程研究所(Kriso)提出了一种具有多个风力涡轮机和波能转换器的混合海上可再生能源平台。在本文中,我们对数值模拟和物理1:50实验进行了对波浪升压和砰砰行的比较研究。该混合可再生能源平台包括具有细长支撑结构以及扩散系泊系统的方形框架结构。考虑到三维结构的相对运动学,特别是对于随机海洋的波浪,它可能不仅经历垂直而且水平砰的影响。在研究波浪升压(AirPap)之后,检查三维侵袭发生。考虑常规波和随机波。从静态偏移和自由衰减测试检查数值模型的系统识别。在实验和数值数据之间的系统比较之后,鉴定了最大波浪升高和最差的砰隙发生在相对速度方面。

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