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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Computational Fluid Dynamics Analysis of Floating Offshore Wind Turbines in Severe Pitchinq Conditions
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Computational Fluid Dynamics Analysis of Floating Offshore Wind Turbines in Severe Pitchinq Conditions

机译:浮动近海风力涡轮机的计算流体动力学分析

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The unsteady aerodynamics of floating wind turbines is more complex than that of fixed-bottom turbines, and the uncertainty of low-fidelity predictions is higher for floating turbines. Navier-Stokes computational fluid dynamics (CFD) can improve the understanding of rotor and wake aerodynamics of floating turbines, and help improving lower-fidelity models. Here, the flow field of the NREL 5 MW rotor with fixed tower, and subjected to prescribed harmonic pitching past the tower base are investigated using blade-resolved CFD compressible flow COSA simulations and incompressible flow FLUENT simulations. CFD results are also compared to predictions of the FAST wind turbine code, which uses blade element momentum theory (BEMT). The selected rotor pitching parameters correspond to an extreme regime unlikely to occur without faults of the turbine safety system, and thus relevant to extreme aerodynamic load analysis. The rotor power and loads in fixed-tower mode predicted by both CFD codes and BEMT are in very good agreement. For the floating turbine, all predicted periodic profiles of rotor power and thrust are qualitatively similar, but the power peaks of both CFD predictions are significantly higher than those of BEMT. Moreover, cross-comparisons of the COSA and FLUENT predictions of blade static pressure also highlight significant compressible flow effects on rotor power and loads. The CFD analyses of the downstream rotor flow also reveal wake features unique to pitching turbines, primarily the space- and time-dependence of the wake generation strength, highlighted by intermittency of the tip vortex shedding.
机译:浮动风力涡轮机的不稳定空气动力学比固定底部涡轮机更复杂,并且对于浮动涡轮机的低保真预测的不确定性更高。 Navier-Stokes计算流体动力学(CFD)可以改善对转子的理解和浮动涡轮机的唤醒空气动力学,并有助于改善低保真模型。这里,使用叶片分辨的CFD可压缩流动COSA模拟和不可压缩流畅的模拟研究了具有固定塔的NRER 5 MW转子的流场,并经受规定的谐波俯仰超过塔架基座。 CFD结果也与快速风力涡轮机代码的预测相比,它使用叶片元件动量理论(BEMT)。所选择的转子俯仰参数对应于极端的状态,不太可能在涡轮机安全系统的情况下没有发生故障,因此与极端的空气动力负荷分析相关。通过CFD代码和BEMT预测的固定塔模式中的转子功率和负载非常良好。对于浮动涡轮机,所有预测的转子功率和推力的周期性曲线都是类似的,但CFD预测的功率峰值显着高于Bemt。此外,COSA的交叉比较和刀片静压的流畅预测也强调了对转子动力和负载的显着压缩流动影响。下游转子流的CFD分析还揭示了螺旋涡轮机独特的唤醒特征,主要是尾翼涡旋脱落的间歇性的空间和时间依赖性。

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