EFFICIENCY ANALYSIS OF ELECTROMECHANICAL CONVERSION SYSTEMS OF WIND TURBINES WITH AERODYNAMIC MULTIPLICATION

P. Andrienko, D. Alekseevskiy, O.V. Blyzniakov, O. Nemykina, I. Nemudriy
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Abstract

In this article, we have considered the state of development of high-power horizontal wind turbines. The most common wind turbines for operation with variable wind flow speed usually include a frequency converter to ensure the compatibility of generator with network. It leads to decrease in the efficiency of wind energy conversion system, while the use of direct connection of the generator to the axis of wind wheel leads to a significant increase in the weight and cost of the generator. The wind turbine with aerodynamic multiplication is an alternative to such systems. Its prototype with 750 kW power is manufactured and studied in Ukraine. This wind energy conversion system with the synchronous or induction generators offers the property to generate energy under optimal condition with invariable rotational speed of generator rotor within the wide range of variable speed of wind flow. In this case, it is not necessary to apply the frequency converter that contributes to increasing the efficiency and reducing the cost of wind turbine. As shown, the relative performances of mass, cost and efficiency of generators in proposed system comparatively to conventional one depend on the multiplication factor (i.e. ratio of the rotational speeds of wind turbine and generator). When the power of wind turbines is from 750 to 2500 kW, the multiplication factor is within the limits of 10.72 to 4.75. The theoretical and experimental study shows that the wind turbines with aerodynamic multiplication can be competitive as compared to conventional horizontal wind turbines. This article is aimed to comparative analysis of the quantitative and qualitative characteristics of the equipment used in high-power horizontal wind turbines with direct connection of generators to the axis of wind turbine and in wind turbines with aerodynamic multiplication. References 27, tables 1, figures 6.
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带空气动力倍增的风力涡轮机机电转换系统的效率分析
本文探讨了大功率水平风力涡轮机的发展状况。最常见的变风速风力涡轮机通常包括一个变频器,以确保发电机与电网的兼容性。这导致了风能转换系统效率的降低,而使用发电机与风轮轴直接连接则导致了发电机重量和成本的显著增加。空气动力倍增风力涡轮机是此类系统的替代方案。其原型机功率为 750 千瓦,在乌克兰制造和研究。这种带有同步或感应发电机的风能转换系统可在风速变化范围较大的情况下,以发电机转子不变的转速在最佳条件下产生能量。在这种情况下,无需使用变频器,从而提高了效率,降低了风力涡轮机的成本。如图所示,与传统系统相比,拟议系统中发电机的质量、成本和效率的相对性能取决于乘法系数(即风力涡轮机和发电机的转速比)。当风力涡轮机的功率在 750 至 2500 千瓦之间时,倍增系数在 10.72 至 4.75 之间。理论和实验研究表明,与传统的水平风力涡轮机相比,采用空气动力倍增技术的风力涡轮机具有很强的竞争力。本文旨在对发电机与风轮轴直接连接的大功率水平风力涡轮机和空气动力倍增风力涡轮机所用设备的定量和定性特征进行比较分析。参考文献 27,表 1,图 6。
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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