基于相互最小尾流效应的风电场涡轮优化配置

V. Radulescu
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引用次数: 0

摘要

罗马尼亚被认为是东南欧风电潜力最大的国家,产能超过14吉瓦。目前,由于对风力发电场的投资超过90亿欧元,风力发电量约为2500兆瓦,约占国内能源产量的20-25%。除了现有的风力发电厂,还有三个新的风力发电厂即将建成。本文提出了一种优化风电场中各涡轮机分布的方法,以使各涡轮机在运行过程中由于尾流效应而产生的相互影响最小化。桅杆引起的扰动与涡轮机舱、记录的大气数据和涡轮排数之间产生了相关性。采用Fluent软件对旋翼产生的主涡进行建模,计算场结构在主风向上。估计了转子和机舱后的涡。简要介绍了摩尔多瓦南部风力发电场未来位置的重要空气参数的测量和记录数据。数值模型在2兆瓦左右的几种型号涡轮机上进行了测试,从而进行了比较研究。在此基础上,对多年生产的可能能源进行了评估。通过估算两排和100排风力发电机的实施成本,对风力发电机的分布进行了新的校正。
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Optimizing the turbines distribution in wind farms based on mutual minimization of the wake effect
Romania is considered the country in Southeast Europe with the highest wind potential, with a production capacity of over 14 GW. Currently, due to the investments of over 9 billion euros made in wind farms, approximately 2500 MW are produced from wind, representing about 20-25% of domestic energy production. In addition to the existing wind power plants, three more new wind farms will soon be realized. This paper presents a methodology for optimizing the distribution of turbines in a wind farm so as to minimize the mutual influence of turbines during operation, due to the wake effect. A correlation is created between the mast-induced disturbances and the turbine nacelle, the recorded atmospheric data, and the number of turbines rows. Fluent software is used to model the main vortex produced by the rotor, for which the computational field is structured in the main wind direction. The vortices behind the rotor and nacelle are estimated. The measured and recorded data of significant air parameters in the future location of the wind farm, in the southern part of Moldova, are briefly presented. The numerical model was tested for several types of turbines with a capacity of about 2 MW, thus conducting a comparative study. Based on these results, the possible energy to be produced multi-annually was evaluated. A new correction of the turbine distribution was made, by estimating the implementation costs of the wind farm with turbines distributed in two and 100 rows.
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