EFFICIENCY ANALYSIS OF USING TYPICAL AND ATYPICAL WIND ENERGY INSTALATIONS

M. Tarasenko, Kateryna Kozak, L. Omeiza, Myroslav Zin
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Abstract

The article analyzes the energy efficiency of typical wind turbines (Savonius, Musgrave, Evans, Darier, Magnus, Lentz) and non-typical wind turbines (carousel-petal, double, powerful wind turbines operating on the basis of the Magnus effect, stationary turbine-type wind turbines, airship wind turbines filled with helium ), Sklyarov wind turbine, wind generators, constructions of various wind energy types installations in terms of axis location – vertically axial or horizontally axial, the limit value of the coefficient of wind energy utilization (СWEU), the influence of the control voltage regulator on the reliability and durability of the wind power plant, effectiveness of using confusors and guides for increasing the energy of the wind flow, the efficiency of compact derivative gears and flying wind generators, protection against lightning and overvoltage’s and noise, coefficient of wind flow inhibition etc. It also has been analyzed the effectiveness of the shape of the wind wheel blade and the rotor, the influence of the average annual wind speed and the equivalent number of hours of nominal power generation on the decision-making on the installation of powerful wind turbines, the influence of the number of blades on the speed, the energy efficiency of the wind energy installation of the Sheer Wind company, Air Grey and stationary wind generators, protection against lightning and overvoltage, an approximate determination of the capacity of any wind power plant. It has been established that the speed of the rotor rotation in wind turbines of similar power differs by several times. The number, width, and length of the blades of classic wind turbines with a horizontal axis of rotation and the speed of rotation of the rotor of wind turbines similar in power, which differ by several times, were analyzed.
使用典型和非典型风能装置的效率分析
本文分析了典型风力涡轮机(Savonius, Musgrave, Evans, Darier, Magnus, Lentz)和非典型风力涡轮机(基于Magnus效应运行的旋转盘花瓣,双功率风力涡轮机,固定式风力涡轮机,充满氦气的飞艇风力涡轮机),Sklyarov风力涡轮机,风力发电机,各种风能类型设施的建筑在轴位置方面的能源效率-垂直轴向或水平轴向,风能利用系数的极限值(СWEU)、控制稳压器对风电场可靠性和耐久性的影响、使用干扰器和导向器增加风的能量的有效性、紧凑的派生齿轮和飞行风力发电机的效率、防雷、过电压和噪声的保护、风的抑制系数等。还分析了风轮叶片的形状的有效性和转子的影响同等数量的年平均风速和小时的名义发电决策上强大的风力涡轮机的安装,速度上的叶片数量的影响,风力发电的能源效率公司安装的风,空气灰和静止的风力发电机,防止雷电过电压,任何风力发电厂容量的近似确定。已经确定,在相同功率的风力发电机中,转子转速相差数倍。分析了具有水平旋转轴的经典风力机叶片的数量、宽度和长度,以及功率相近但相差数倍的风力机转子的转速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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