海洋工程
涡轮机
船体
系泊
Spar平台
工程类
弗劳德数
塔楼
子程序
风力发电
结构工程
航空航天工程
计算机科学
机械
分手
物理
电气工程
操作系统
作者
Bon-Jun Koo,Andrew J. Goupee,Kostas F. Lambrakos,Ho-Joon Lim
标识
DOI:10.1115/omae2014-24254
摘要
The DeepCwind floating wind turbine model tests were performed at MARIN (Maritime Research Institute Netherlands) with a model set-up corresponding to a 1:50 Froude scaling. In the model tests, the wind turbine was a scaled model of the National Renewable Energy Lab (NREL) 5MW, horizontal axis reference wind turbine supported by three different generic floating platforms: a spar, a semi-submersible and a tension-leg platform (TLP) (Ref. [1] and [2]). This paper presents validation of the MLTSIM-FAST [3] code with DeepCwind semi-submersible wind turbine model test results. In this integrated program, the turbine tower and rotor dynamics are simulated by the subroutines of FAST [4], and the hydrodynamic loads and mooring system dynamics are simulated by the subroutines of MLTSIM. In this study, fully coupled hull/mooring dynamics and second-order difference-frequency response are included in MLTSIM-FAST. The analysis results are systematically compared with model test results and show good agreement.
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