首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >MODELING AND ANALYSIS OF A 5 MW SEMI-SUBMERSIBLE WIND TURBINE COMBINED WITH THREE FLAP-TYPE WAVE ENERGY CONVERTERS
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MODELING AND ANALYSIS OF A 5 MW SEMI-SUBMERSIBLE WIND TURBINE COMBINED WITH THREE FLAP-TYPE WAVE ENERGY CONVERTERS

机译:5兆瓦半潜式风轮机与三瓣式波能换流器组合的建模与分析

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Semi-submersible floating structures might be an attractive system to support wind turbines and wave energy converters (WECs) in areas with abundant wind and wave energy resources. The combination of wind turbines and WECs may increase the total power production and reduce the cost of the power. A concept of a semi-submersible with a 5 MW horizontal axis wind turbine combined with three flap-type WECs is presented in this paper. The concept is named as Semi-submersible Flap Combination (SFC). The WECs of the SFC are inspired by an optimized bottom-fixed rotating flap-type wave energy absorber. Each WEC of SFC includes an elliptical cylinder, two supporting arms, a rotational axis and a power take off (PTO) system. A time domain numerical modeling method for the SFC is presented. The numerical model is using the state-of-the-art code Simo/Riflex/Aerodyn. Linear rotational damping is introduced to model the effects of the PTO system. The choice of a PTO damping coefficient and of the mass of the elliptical cylinders has a significant effect on the power generated by the WECs. Such effects have been addressed and discussed in the paper through a sensitivity study.
机译:半潜式浮动结构可能是吸引人的系统,可在风能和波能资源丰富的地区为风力涡轮机和波能转换器(WEC)提供支持。风力涡轮机和WEC的组合可以增加总发电量并降低电力成本。本文提出了一种半潜式5 MW水平轴风力涡轮机与三个襟翼式WEC相结合的概念。该概念称为半潜式襟翼组合(SFC)。 SFC的WEC受到优化的底部固定旋转襟翼型波能吸收器的启发。 SFC的每个WEC都包括一个椭圆形圆柱体,两个支撑臂,一个旋转轴和一个取力器(PTO)系统。提出了一种SFC的时域数值建模方法。数值模型使用最新的代码Simo / Riflex / Aerodyn。引入线性旋转阻尼来模拟PTO系统的效果。 PTO阻尼系数和椭圆圆柱体质量的选择对WEC产生的功率有重大影响。通过敏感性研究,已经解决并讨论了此类影响。

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