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首页> 外文期刊>Journal of Fluids and Structures >Unsteady thrust on an oscillating wind turbine: Comparison of blade-element momentum theory with actuator-line CFD
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Unsteady thrust on an oscillating wind turbine: Comparison of blade-element momentum theory with actuator-line CFD

机译:在振荡风力涡轮机上的不稳定推动:刀片元素动量理论与执行器线CFD的比较

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Floating platforms are being deployed and developed further for offshore wind power generation in deep water. Platforms undergo surge and pitch in waves, causing their supported wind turbine to oscillate back and forth. An important input to modelling the platform - and hence hub - motion are the forces, moments and energy dissipation provided by the turbine rotor. Blade-element momentum theory (BEMT) provides a numerically-efficient method of calculating these quantities in steady flow, but its application to an oscillating turbine is largely untested. To test how appropriate a quasi-steady BEMT methodology is for this application, BEMT (with a high-axial-induction-factor correction) is compared with CFD using an actuator-line representation of the NREL 5 MW design, typical of the type of turbine that might be deployed. For simplicity we assume constant rotor speed and pitch angle. The paper demonstrates that, for typical wave periods and onset wind, a quasi-steady BEMT model provides a good description of loads on an oscillating turbine rotor and provides near-identical results to CFD for forces and power dissipation. However, a common time-dependent BEMT variant does not improve predictions in this application, but proves detrimental to power prediction. The paper also derives a simple formula, based on steady-flow load characteristics, to estimate dissipative damping by the rotor. (C) 2020 Elsevier Ltd. All rights reserved.
机译:浮动平台正在部署和开发用于深水中的海上风力发电。平台在波浪中发生浪涌和俯仰,导致其支持的风力涡轮机来回振荡。建模平台的重要输入 - 以及轮毂运动是涡轮机转子提供的力量,时刻和能量耗散。刀片元素动量理论(BEMT)提供了一种以稳定流动计算这些数量的数值有效的方法,但其在振荡涡轮机上的应用主要是未测试的。为了测试恰当的准稳态BEMT方法,使用NRER 5 MW设计的致动器线表示,与CFD进行比较,比较BEMT(具有高轴向感应系数校正),典型的可能部署的涡轮机。为简单起见,我们假设恒定的转子速度和俯仰角。本文表明,对于典型的波段和起始风,准稳态Bemt模型提供了振荡涡轮机转子上的载荷的良好描述,并为CFD提供了近似相同的结果,用于力量和功耗。然而,常见的时间依赖性BEMT变体不会改善本申请中的预测,但证明对功率预测有害。本文还基于稳态负荷特性来衍生出简单的公式,以估算转子的耗散阻尼。 (c)2020 elestvier有限公司保留所有权利。

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