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A NOVEL WAKE INTERACTION MODEL FOR WIND FARM LAYOUT OPTIMIZATION

机译:风电场布局优化的新型尾波相互作用模型

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Optimizing the turbine layout in a wind farm is crucial to minimize wake interactions between turbines, which can lead to a significant reduction in power generation. This work is motivated by the need to develop wake interaction models that can accurately capture the wake losses in an array of wind turbines, while remaining computationally tractable for layout optimization studies. Among existing wake interaction models, the sum of squares (SS) model has been reported to be the most accurate. However, the SS model is unsuitable for wind farm layout optimization using mathematical programming methods, as it leads to non-linear objective functions. Hence, previous work has relied on approximated power calculations for optimization studies. In this work, we propose a mechanistic linear model for wake interactions based on energy balance, with coefficients determined based on publicly available data from the Horns Rev wind farm. A series of numerical tests was conducted using test cases from the wind farm layout optimization literature. Results show that the proposed model is solvable using standard mathematical programming methods, and resulted in turbine layouts with higher efficiency than those found by previous work.
机译:在风电场中优化涡轮机布局对于最大程度地减少涡轮机之间的尾流相互作用至关重要,因为这可能导致发电量显着减少。这项工作的动机是需要开发唤醒交互模型,该模型可以准确捕获一系列风力涡轮机中的唤醒损失,同时在计算上仍可进行布局优化研究。在现有的尾流交互模型中,据报道平方和(SS)模型是最准确的。但是,SS模型不适合使用数学编程方法进行风电场布局优化,因为它会导致非线性目标函数。因此,先前的工作依赖于近似功率计算来进行优化研究。在这项工作中,我们提出了一种基于能量平衡的尾流相互作用的机械线性模型,其系数是基于Horns Rev风电场的公开数据确定的。使用风电场布局优化文献中的测试案例进行了一系列数值测试。结果表明,所提出的模型可以使用标准的数学编程方法求解,并且可以使涡轮机布局的效率高于先前的工作。

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