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首页> 外文期刊>Journal of Fluid Science and Technology >Initial Design of Tension Leg Platform for Offshore Wind Farm
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Initial Design of Tension Leg Platform for Offshore Wind Farm

机译:海上风电场张紧腿平台的初步设计

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摘要

As a floating foundation for wind turbine, dynamic response of offshore structure to external forces should be as small as possible because the motion of the structure imposes inertial force to a wind turbine system. Generally, a TLP (Tension Leg Platform) has favorable characteristics that its dynamic response in waves is negligibly small compared to other type of floating foundation. Our conceptual design of TLP for wind turbine was carried out in consideration of mooring force and easy maintenance. Numerical analyses were performed on dynamic response and tension deviation of leg in waves, natural frequency of vibration, and dynamic response to seismic load. As a result, it is found that natural periods of heave and pitch are rather short and amplitudes of motions are very small. It is also found that it keeps sufficient safety factor to extreme environmental conditions including earthquake, and is free from resonance with a wind turbine system.
机译:作为风力涡轮机的浮动基础,海上结构对外力的动力响应应尽可能小,因为结构的运动会向风力涡轮机系统施加惯性力。通常,TLP(张力腿平台)具有良好的特性,即与其他类型的浮动基础相比,其在波浪中的动态响应可以忽略不计。考虑到系泊力和易于维护,我们针对风力涡轮机的TLP进行了概念设计。对腿部在波浪中的动力响应和张力偏差,振动的固有频率以及对地震载荷的动力响应进行了数值分析。结果,发现起伏和俯仰的自然周期相当短,并且运动幅度非常小。还发现,它对于包括地震在内的极端环境条件具有足够的安全系数,并且不会与风力涡轮机系统产生共振。

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