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SIMULATION OF WIND TURBINE FLOW USING THE ACTUATOR LINE METHOD IN NEK5000

机译:利用NEK5000的线线法模拟风轮机流动。

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Wind turbine wake models are used to estimate the velocity profile and magnitude downstream of wind towers in large wind farms. Current models are based on simple geometric and empirical factors, which typically overestimate individual turbine output. Recent research has focused on using improved models of turbine rotors, combined with computational fluid dynamics (CFD) programs to simulate turbine wake flow. In this paper, we report on our efforts to simulate flow past wind turbines using a new adaptation of the actuator line method for turbine blade modeling. This method creates a geometric representation of each rotating turbine blade. Grid points in the CFD flow field are selected within the outline of the blades and near downstream planes, and the aerodynamic forces are calculated using traditional blade element equations. Blade forces are then input as body forces into the Navier Stokes equations in the host CFD program. This model is combined with the advanced parallel CFD code, NEK5000, which has been proven to provide high-resolution results with significantly reduced compute resources. Program subroutines are developed to generate the actuator line and blade geometry, and to calculate the blade lift and drag forces. Details of the actuator line setup and calculations, CFD flow simulation setup, and results from current development runs simulating a single turbine will be presented. Current results are consistent with published research. Lessons learned, and a roadmap to ongoing development are also discussed.
机译:风力涡轮机尾流模型用于估计大型风电场中风塔下游的速度分布和大小。当前模型基于简单的几何和经验因素,通常会高估单个涡轮机的输出。最近的研究集中在使用改进的涡轮转子模型上,并结合计算流体动力学(CFD)程序来模拟涡轮尾流。在本文中,我们报告了使用新的执行器线方法进行风轮机叶片建模的模拟流过风轮机的努力。该方法创建了每个旋转涡轮叶片的几何表示。在叶片轮廓内和下游平面附近选择CFD流场中的网格点,并使用传统的叶片单元方程计算空气动力。然后,将叶片力作为体力输入到主机CFD程序中的Navier Stokes方程中。该模型与高级并行CFD代码NEK5000结合使用,该代码已被证明可提供高分辨率结果,并显着减少计算资源。开发了程序子例程以生成执行器线和叶片几何形状,并计算叶片升力和阻力。将介绍执行器管线设置和计算,CFD流量模拟设置以及当前模拟单个涡轮机的运行结果的详细信息。目前的结果与已发表的研究一致。还讨论了所学到的经验教训以及进行中的开发路线图。

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