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Loads and Response of a Tension Leg Platform Wind Turbine with Non-Rotating Blades: An Experimental Study

机译:带非旋转叶片的张紧腿平台风力发电机的载荷和响应:实验研究

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This paper describes model testing of a Tension Leg Platform Wind Turbine (TLPWT) with non-rotating blades to better understand its motion and tendon responses when subjected to combined wind and unidirectional regular wave conditions. The TLPWT structure is closely based on the National Renewable Energy Laboratory (NREL) 5 MW concept. Multiple free decay tests were performed to evaluate the natural periods of the model in the key degrees of freedom, whilst Response Amplitude Operators (RAOs) were derived to show the motion and tendon characteristics. The natural periods in surge and pitch motions evaluated from the decay tests had a relatively close agreement to the theoretical values. Overall, the tested TLPWT model exhibited typical motion responses to that of a generalised TLP with significant surge offsets along with stiff heave and pitch motions. The maximum magnitudes for the RAOs of surge motion and all tendons occurred at the longest wave period of 1.23 s (~13.0 s at full-scale) tested in this study. From the attained results, there was evidence that static wind loading on the turbine structure had some impact on the motions and tendon response, particularly in the heave direction, with an average increase of 13.1% in motion amplitude for the tested wind conditions. The wind had a negligible effect on the surge motion and slightly decreased the tendon tensions in all tendons. The results also showed the set-down magnitudes amounting to approximately 2–5% of the offset. Furthermore, the waves are the dominant factor contributing to the set-down of the TLPWT, with a minimal contribution from the static wind loading. The results of this study could be used for calibrating numerical tools such as CFD codes.
机译:本文介绍了具有非旋转叶片的张紧腿平台风力涡轮机(TLPWT)的模型测试,以更好地了解在组合风和单向规则波条件下其运动和腱响应。 TLPWT结构紧密基于国家可再生能源实验室(NREL)的5兆瓦概念。进行了多次自由衰减测试,以评估关键自由度下模型的自然周期,同时推导了响应幅度算子(RAO)以显示运动和腱特性。通过衰减测试评估的喘振和俯仰运动的自然周期与理论值相对接近。总体而言,经过测试的TLPWT模型表现出对一般TLP的典型运动响应,并具有明显的喘振偏移以及剧烈的升沉和俯仰运动。浪涌运动和所有腱的RAO的最大幅度发生在本研究中测试的最长波周期1.23 s(满量程为〜13.0 s)时。从获得的结果来看,有证据表明,在涡轮机结构上的静态风载荷对运动和腱响应有一定影响,特别是在升沉方向上,在测试的风况下,运动幅度平均增加了13.1%。风对浪涌运动的影响可忽略不计,并且略微降低了所有肌腱的肌腱张力。结果还显示,偏移量约为偏移量的2–5%。此外,波浪是影响TLPWT降落的主要因素,而静态风荷载的贡献最小。这项研究的结果可用于校准数字工具,例如CFD代码。

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