Development and Performance Investigation of a Unique Dual-rotor Savonius-type Counter-rotating Wind Turbine

D. H. Didane, Do’arsherah Kudam, M. Zulkafli, S. Mohd, M. F. Mohideen Batcha, A. Khalid
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引用次数: 4

Abstract

Wind power is sustainable and prevalent virtually all over the globe. However, the conversion efficiency of the conventional single-rotor wind turbine (SRWT) is still far from satisfactory. The dual-rotor counter-rotating concept is among the reliable techniques used to enhance the efficiency of a wind energy conversion device for its renowned effectiveness. This study aims to investigate the performance of a Savonius dual/twin-rotor system, particularly in low-speed wind conditions while employing the counter-rotating technique. The evaluation of this technique is presented in terms of aerodynamic characteristics, including the power and torque coefficients. The results have shown that the new concept was able to improve the performance of the system extensively and was capable of operating in a lower wind speed condition. Compared to a single-rotor system, an additional 42% more torque was possible owing to the existence of a second rotor in the new system. The results have also revealed that the conversion efficiency of the system has been enhanced substantially. A corresponding average power coefficient of up to 28% was achieved. The present technique is thought to be promising for wind energy conversion systems, including sites with poor wind conditions.
一种独特的双转子savonius型反向旋转风力机的研制与性能研究
风力发电是可持续的,几乎在全球都很普遍。然而,传统的单转子风力机(SRWT)的转换效率还远远不能令人满意。双转子反向旋转的概念是其中可靠的技术,用于提高风能转换装置的效率,其著名的有效性。本研究旨在研究Savonius双/双转子系统的性能,特别是在低速风条件下,同时采用反向旋转技术。对该技术进行了气动特性评价,包括功率系数和扭矩系数。结果表明,新概念能够大大提高系统的性能,并能够在较低风速条件下运行。与单转子系统相比,由于在新系统中存在第二个转子,额外增加42%的扭矩是可能的。结果还表明,该系统的转换效率得到了显著提高。相应的平均功率系数可达28%。目前的技术被认为对风能转换系统很有希望,包括风力条件差的地方。
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