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Wind turbine unsteady aerodynamics and performance by a free-wake panel method

机译:风力涡轮机不稳定的空气动力学和自由唤醒面板方法的性能

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The performance of a horizontal axis wind turbine in axial and yawed flow are investigated by a free-wake, unsteady, three-dimensional aerodynamic formulation. Under the assumption of attached-flow conditions, predictions in terms of blade(s)/rotor aeroloads and velocity field downstream the rotor disk are compared with experimental data concerning the Mexico rotor, namely a three-bladed model tested in the large open jet facility of the German Dutch Windtunnels DNW. The numerical/experimental comparison herein addressed is aimed at highlighting drawbacks and potentialities of aerodynamic formulations based on the Boundary Element Method for incompressible subsonic flows around wind turbines that, surprisingly, are barely used respect to marine current turbine applications. The accuracy of numerical outcomes respect to experiments and other widely used approaches (like lifting-line, vortex-lattice and blade element theories) proves that panel method rotor aerodynamics is accurate enough as long as severe flow separations do not occur on turbine blades, thus avoiding time-consuming CFD analyses, often not compatible with a preliminary design of the device. In addition, performance of the Mexico model-scale rotor in two operating conditions are discussed. They concern the presence of an extreme vertical shear and the installation of the rotor on a floating platform undergoing a pitching planar motion. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过自由唤醒,不稳定的三维空气动力学制剂研究了水平轴风风力涡轮机的性能轴向和偏航的流动。在附加流动条件的假设下,与墨西哥转子的实验数据进行比较了转子盘下游的叶片/转子气球和速度场的预测,即在大开口喷气机构中测试的三刃模型德国荷兰风Tunnels DNW。本文解决的数值/实验比较旨在突出基于风力涡轮机周围的不可压缩子源的边界元件的空气动力学制剂的缺点和潜力,令人惊讶的是,令人惊讶的是,令人惊讶的是,几乎没有针对船用涡轮机应用。数值结果的准确性尊重实验和其他广泛使用的方法(如升降线,涡流和刀片元件理论)证明了面板法转子空气动力学足够准确,只要在涡轮叶片上不会发生严重流动分离,因此避免耗时的CFD分析,通常与设备的初步设计不兼容。此外,还讨论了两个操作条件中的墨西哥式模型转子的性能。他们涉及在浮动平面运动的浮动平台上存在极端垂直剪切和转子的安装。 (c)2020 elestvier有限公司保留所有权利。

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