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Mean kinetic energy distribution in finite-size wind farms: A function of turbines' arrangement

机译:有限尺寸风电场的平均动能分布:涡轮机排列的功能

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In this work the redistribution and recovery of mean kinetic energy in a realistic, finite size wind farm is studied for neutral atmospheric boundary layer conditions. Five different wind farm configurations, with different wind turbine arrangements, are considered, with four different inter-turbine spacings. By means of a localized control volume analysis, this work quantifies the mean kinetic energy recovery mechanisms as a function of downstream distance from the wind farm leading edge. Results illustrate the dependence of the mean kinetic energy distribution on the turbines' arrangement and the spatial evolution of the dominant transport mechanisms (advection and vertical flux). In the first rows of turbines, advection dominates the wake recovery, while for the last rows of turbines vertical flux of mean kinetic energy is the dominant transport mechanism. In between, a smooth transition exists between both mechanisms. From the results a low-order power output predictor model for a finite size wind farm is developed. This model allows estimating the harvested power at each wind turbine row with only the geometrical wind farm layout as an input. The low-order model is compared with other published models and validated using published experimental measurements. The new model performs very well, with errors smaller than 5%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了一个现实,有限尺寸的风电场中的平均动能的再分配和恢复,用于中性大气边界层条件。考虑了五种不同的风力电源场配置,具有不同的风力涡轮机布置,具有四种不同的涡轮机间距。通过局部控制体积分析,该工作量化了平均动能回收机制作为距风电场前缘下游距离的函数。结果说明了平均动能分布对涡轮机的布置和主导传输机制的空间演化的依赖性(平流和垂直助焊剂)。在第一排涡轮机中,平流占据了唤醒恢复,而对于平均动能的垂直通量的最后一排涡轮机是主要的运输机制。在两者之间,两个机制之间存在平滑的转换。结果,开发了有限尺寸风电场的低位功率输出预测仪模型。该模型允许仅用几何风电场布局作为输入,估计每个风力涡轮机排的收获功率。将低阶模型与其他公开的模型进行比较并使用已发布的实验测量进行验证。新模型非常好,错误误差小于5%。 (c)2019 Elsevier Ltd.保留所有权利。

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