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Study of the Wind Farm Arrangements and Wake Characteristic Using Numerical Simulation for Crossflow Wind Turbine

机译:利用数值模拟对交叉流风力涡轮机的风电场布置及唤醒特性研究

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Among of the renewable energy sources, wind energy is the fastest growing. To achieve economic scale, the wind turbines are usually built as wind farms. There are some designs of wind farm that most of them are proposed for horizontal axis wind turbine type. However, there is no wind farm design for vertical axis wind turbine, such as crossflow wind turbine, yet. The crossflow wind turbine could be used to extract wind energy in low wind speed and has a high power coefficient. In order to be able to work perfectly, a proper arrangement of wind turbines on the wind farm should be determine to decrease wake. The objective of this research was to study the effect of the crossflow wind turbine arrangement in wind farm with 2 dimensional numerical analysis using ANSYS FLUENT CFD software. The variations of the wind farm in the study were aligned and staggered configuration, in which the distance between the turbines were 0.5D, 1D and 1.5D, where D was the turbine outer diameter. Each variation was tested at the wind speed of 2 m/s and tip speed ratio (TSR) of 0.1. The study revealed that the best arrangement of crossflow wind turbine configuration is staggered arrangement within the distance S1:S2 of 0.5D:0.5D. The wake effect in staggered arrangement doesn't disturb surrounding the crossflow wind turbine in wind farm area, because the wind is blowing in streamline flow. The appropriate distance between wind turbines would increase the power density of the wind farm. Compare to an isolated crossflow wind turbine, there is 10% increase of power density.
机译:在可再生能源中,风能是增长最快的。为了实现经济规模,风力涡轮机通常作为风电场建造。有一些风电场设计,其中大多数都是针对横轴风力涡轮机型的。然而,垂直轴风力涡轮机没有风电场设计,例如交叉流风力涡轮机。交叉流风力涡轮机可用于在低风速下提取风能并且具有高功率系数。为了能够完美地工作,风电场上的风力涡轮机的适当布置应确定减少唤醒。本研究的目的是使用ANSYS流畅的CFD软件研究交叉流风力涡轮机装置在风电场中的影响。研究中的风电场的变化是对准的和交错的配置,其中涡轮机之间的距离为0.5d,1d和1.5d,其中d是涡轮机外径。在风速下测试每个变化,尖端速度为0.1的尖端速度比(TSR)。该研究表明,在距离S1:0.5d的距离S1:0.5d的距离S1:0.5d中,交叉流风力涡轮机配置的最佳布置是交错的布置。交错布置中的唤醒效果不会打扰风电场区域的交叉流风力涡轮机周围,因为风吹在流线流中。风力涡轮机之间的适当距离会增加风电场的功率密度。与隔离的十字流风涡轮机进行比较,功率密度增加10%。

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