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Wake Meandering: A Pragmatic Approach

机译:唤醒蜿蜒:务实的方法

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The phenomenon of wake meandering is long known empirically, but has so far not been treated in a satisfactory manner on the wind turbine load modelling side. We present a consistent, physically based theory for wake meandering, which we consider of crucial importance for the overall description of wind turbine loadings in wind farms. In its present version, the model is confined to single wake situations-including a simple heuristic description of wake interaction with a reflecting surface. Contrary to previous attempts to model wind turbine wake loading, the present approach opens for a unifying description in the sense that turbine power and load aspects can be treated simultaneously. This capability is a direct and attractive consequence of the model being based on the underlying physical process, and it potentially opens for optimization of wind farm topology, wind farm operation, as well as control strategies for the individual turbine. The application of the proposed dynamic wake meandering methodology with existing aeroelastic codes is straightforward and does not involve any code modifications. The strategy is simply to embed the combined effect of atmospheric turbulence, added wake turbulence and the intermittent 'turbulence contribution', caused by wake meandering, in files replacing the traditional turbulence file input to aeroelastic computations.
机译:尾流曲折现象在经验上早已为人所知,但到目前为止,在风力涡轮机负荷建模方面尚未以令人满意的方式进行处理。我们提出了一种基于物理的一致的尾流弯曲理论,我们认为该理论对于风电场中风机负载的总体描述至关重要。在当前版本中,该模型仅限于单个尾波情况-包括尾波与反射面相互作用的简单启发式描述。与先前对风力涡轮机尾流载荷建模的尝试相反,本方法为统一描述打开了意义,因为可以同时处理涡轮机功率和载荷方面。此功能是模型基于基础物理过程的直接且有吸引力的结果,并且有可能为风电场拓扑结构,风电场运行以及单个涡轮机的控制策略的优化开放。所提出的动态尾流曲折方法与现有的空气弹性代码的应用是直接的,并且不涉及任何代码修改。该策略只是将大气湍流,附加的尾流湍流和由尾流曲折引起的间歇性“湍流贡献”的组合效果嵌入文件中,以代替传统的湍流文件输入到气动弹性计算中。

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