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Implicit Large-Eddy Simulation of Wind Turbine Wakes and Turbine-Wake Interactions using the Vorticity Transport Equations

机译:使用涡度输运方程的风力机尾流和涡轮-尾流相互作用的隐式大涡模拟

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Recent development of a multi-dimensional upwind-based finite volume scheme for the vorticity transport equations (Foti and Duraisamy, Comp & Fluids 167, 17-32) has enabled simulation of vortical coherent structures on relatively coarse grids while maintaining key flow invariants. In this work, we assess the ability of the scheme to simulate high Reynolds number wind turbine wakes. The wake of a wind turbine is composed of several large coherent structures, which dominate the unsteady flow field. The wake of the MEXICO wind turbine blades is discretized on an adaptively refined mesh through actuator line model parameterization. The accurate statistics of the near wake compare well with experimental measurements while employing a relatively coarse grid with a resolution of 32 cells per rotor diameter. Despite the coarse grid resolution, pertinent vortical structures are captured and preserved throughout the wake and through changes in grid refinement. The reduced computational costs of the present scheme allows multiple turbines to be simulated and capture the complex vortical structures present in turbine-turbine wake interactions.
机译:基于多维逆风的有限体积方案的最新发展为旋涡输运方程式(Foti和Duraisamy,Comp&Fluids 167,17-32)使得能够在相对粗糙的网格上模拟旋涡相干结构,同时保持关键的流量不变性。在这项工作中,我们评估了该方案模拟高雷诺数风力涡轮机尾流的能力。风力涡轮机的尾流由几个较大的相干结构组成,这些结构主导了不稳定的流场。通过执行器线模型参数化,MEXICO风力涡轮机叶片的尾迹在自适应细化的网格上离散化。接近尾声的准确统计数据与实验测量结果相吻合,同时采用了相对较粗的网格,每个转子直径分辨率为32个像元。尽管网格分辨率很低,但在整个尾声期间以及通过网格细化的变化,都捕获并保留了相关的涡旋结构。本方案的降低的计算成本允许模拟多个涡轮并捕获涡轮-涡轮尾流相互作用中存在的复杂的涡旋结构。

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