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首页> 外文期刊>Indian Journal of Science and Technology >The Modelling of Wind Farm Layout Optimization for the Reduction of Wake Losses
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The Modelling of Wind Farm Layout Optimization for the Reduction of Wake Losses

机译:减少风电损失的风电场布局优化建模

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摘要

The objective of the present research is to find out the optimized dimensions of the wind farm area and turbines layout to reduce the overall cost per unit power. The velocity deficits caused by the wakes of each turbine were calculated by using Jensen’s wake model. The optimal positions of wind turbine placement are evaluated by using genetic algorithm, while sustaining the obligatory space between adjacent turbines for operation safety. The research on the wind farm area dimensions and fully utilization of upstream wind velocity is currently lacking in literature. The logical application of area dimensions and genetic algorithm improved the overall efficiency of the wind farm. It is concluded that proposed duel level optimization method outperforms the existing ones. The total wind farm area (2km ¥ 2km) was divided into 100 identical cells, with each cell having dimensions 200m ¥ 200m . The performance of the proposed method is compared with the results from previous studies. The simulation results showed that power output of the wind farm was increased by using same area with different dimensions. It was observed that by using the same number of wind turbines, the total efficiency of wind farm was increased by 7 %.
机译:本研究的目的是找出风电场面积和涡轮机布局的最佳尺寸,以降低单位功率的总成本。使用詹森的尾流模型计算了由每个涡轮机的尾流引起的速度不足。通过使用遗传算法评估风力涡轮机的最佳位置,同时维持相邻涡轮机之间的强制性空间以确保运行安全。目前尚缺乏关于风电场面积大小和充分利用上游风速的研究。区域尺寸的逻辑应用和遗传算法提高了风电场的整体效率。结论是,所提出的决斗等级优化方法优于现有的决斗等级优化方法。风电场总面积(2km ¥ 2km)被分为100个相同的单元,每个单元的尺寸为200m ¥ 200m。将该方法的性能与以前的研究结果进行了比较。仿真结果表明,风场的功率输出通过使用相同尺寸的不同面积来增加。观察到,通过使用相同数量的风力涡轮机,风电场的总效率提高了7%。

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