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OPTIMIZING THE UNRESTRICTED PLACEMENT OF TURBINES OF DIFFERING ROTOR DIAMETERS IN A WIND FARM FOR MAXIMUM POWER GENERATION

机译:优化风电场中不同转子直径的涡轮的无限制布置,以最大程度地发电

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This paper presents a new method (the Unrestricted Wind Farm Layout Optimization (UWFLO)) of arranging turbines in a wind farm to achieve maximum farm efficiency. The powers generated by individual turbines in a wind farm are dependent on each other, due to velocity deficits created by the wake effect. A standard analytical wake model has been used to account for the mutual influences of the turbines in a wind farm. A variable induction factor, dependent on the approaching wind velocity, estimates the velocity deficit across each turbine. Optimization is performed using a constrained Particle Swarm Optimization (PSO) algorithm. The model is validated against experimental data from a wind tunnel experiment on a scaled down wind farm. Reasonable agreement between the model and experimental results is obtained. A preliminary wind farm cost analysis is also performed to explore the effect of using turbines with different rotor diameters on the total power generation. The use of differing rotor diameters is observed to play an important role in improving the overall efficiency of a wind farm.
机译:本文提出了一种在风电场中布置涡轮机的新方法(无限制风电场布局优化(UWFLO)),以实现最大的风电场效率。由于尾流效应造成的速度不足,风电场中各个涡轮机产生的功率彼此依赖。标准的分析尾流模型已用于说明风电场中涡轮机的相互影响。取决于接近的风速,一个可变的感应系数估计每个涡轮机上的速度赤字。使用约束粒子群优化(PSO)算法执行优化。该模型已针对缩小规模的风电场中风洞实验的实验数据进行了验证。模型与实验结果之间取得了合理的一致性。还进行了初步的风电场成本分析,以探索使用具有不同转子直径的涡轮机对总发电量的影响。观察到使用不同的转子直径在提高风电场的整体效率方面起着重要作用。

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