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Seasonal and yearly wind speed distribution and wind power density analysis based on Weibull distribution function

机译:基于威布尔分布函数的季节性和年度风速分布和风功率密度分析

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Wind energy, which is among the most promising renewable energy resources, is used throughout the world as an alternative to fossil fuels. In the assessment of wind energy for a region, the use of two-parameter Weibull distribution is an important tool. In this study, wind speed data, collected for a one year period between June 2012 and June 2013, were evaluated. Wind speed data, collected for two different heights (20 m and 30 m) from a measurement station installed in Atihm University campus area (Ankara, Turkey), were recorded using a data logger as one minute average values. Yearly average hourly wind speed values for 20 m and 30 m heights were determined as 2.9859 m/s and 3.3216 m/s, respectively. Yearly and seasonal shape (k) and scale (c) parameter of Weibull distribution for wind speed were calculated for each height using five different methods. Additionally, since the hub height of many wind turbines is higher than these measurement heights, Weibull parameters were also calculated for 50 m height. Root mean square error values of Weibull distribution functions for each height, derived using five different methods, show that a satisfactory representation of wind data is achieved for all methods. Yearly and seasonal wind power density values of the region were calculated using the best Weibull parameters for each case. As a conclusion, the highest wind power density value was found to be in winter season while the lowest value was encountered in autumn season. Yearly wind power densities were calculated as 39.955 (W/m(2)), 51.282 (W/m(2)) and 72.615 (W/m(2)) for 20 m, 30 m and 50 m height, respectively. The prevailing wind direction was also determined as southeast for the region. It can be concluded that the wind power density value at the region is considerable and can be exploited using small scale wind turbines. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:风能是最有前途的可再生能源之一,在世界范围内被用作化石燃料的替代品。在评估一个地区的风能时,使用两参数威布尔分布是一种重要的工具。在这项研究中,评估了从2012年6月至2013年6月的一年期间收集的风速数据。从安装在阿提姆大学校园区(土耳其安卡拉)的测量站收集的两个不同高度(20 m和30 m)的风速数据使用数据记录仪记录为一分钟的平均值。确定20 m和30 m高度的年平均每小时风速值分别为2.9859 m / s和3.3216 m / s。使用五种不同的方法,针对每个高度计算了威布尔分布的年和季节形状(k)和尺度(c)参数。此外,由于许多风力涡轮机的轮毂高度高于这些测量高度,因此还针对50 m高度计算了威布尔参数。使用五种不同方法得出的每个高度的威布尔分布函数的均方根均方根值表明,使用所有方法均可以令人满意地表示风数据。使用每种情况的最佳Weibull参数计算该地区的年度和季节性风能密度值。结论是,风能密度最高值出现在冬季,而最低值出现在秋季。对于20 m,30 m和50 m高度,年风能密度分别计算为39.955(W / m(2)),51.282(W / m(2))和72.615(W / m(2))。该地区的盛行风向也被确定为东南。可以得出结论,该地区的风能密度值是相当大的,可以使用小型风力涡轮机来利用。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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