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Wind Turbine Placement Optimization by means of the Monte Carlo Simulation Method

机译:风力涡轮机放置优化通过蒙特卡罗模拟方法进行

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摘要

This paper defines a new procedure for optimising wind farm turbine placement by means of Monte Carlo simulation method. To verify the algorithm’s accuracy, an experimental wind farm was tested in a wind tunnel. On the basis of experimental measurements, the error on wind farm power output was less than 4%. The optimization maximises the energy production criterion; wind turbines’ ground positions were used as independent variables. Moreover, the mathematical model takes into account annual wind intensities and directions and wind turbine interaction. The optimization of a wind farm on a real site was carried out using measured wind data, dominant wind direction, and intensity data as inputs to run the Monte Carlo simulations. There were 30 turbines in the wind park, each rated at 20 kW. This choice was based on wind farm economics. The site was proportionally divided into 100 square cells, taking into account a minimum windward and crosswind distance between the turbines. The results highlight that the dominant wind intensity factor tends to overestimate the annual energy production by about 8%. Thus, the proposed method leads to a more precise annual energy evaluation and to a more optimal placement of the wind turbines.
机译:本文通过蒙特卡罗仿真方法定义了一种优化风电场涡轮机放置的新步骤。为了验证算法的准确性,在风洞中测试实验风电场。在实验测量的基础上,风电场输出的误差小于4%。优化最大化能量生产标准;风力涡轮机的接地位置用作独立变量。此外,数学模型考虑了年度风强度和方向和风力涡轮机相互作用。使用测量的风数据,主导风向和强度数据作为输入来运行Monte Carlo模拟的输入来进行实际网站上的风电场优化。风园中有30个涡轮机,每个额定均为20千瓦。这种选择是基于风电场经济学。该网站按比例分为100平方细胞,考虑到涡轮机之间的最小迎风和横向距离。结果强调,主导风强度因素趋于高估年度能源产量约8%。因此,所提出的方法导致更精确的年能评估并更加最佳地放置风力涡轮机。

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