Wind Energy Resource Utilization: A Review of Its Necessity, Interception Technology and Implementation Challenges

H. Ibrahim, A. G. Ibrahim, J. Eichie, B. Ige
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Abstract

The continuous use of non-renewable energy sources has caused a lot of harm to the earth’s atmosphere and humans. The need to increase the share of renewable energy in global energy usage has been strongly advocated internationally. In this work, wind energy was presented as a viable renewable energy option. Renewable energy with emphasis on wind energy, wind turbines and its types, the need for it to replace other injurious energy sources and the associated challenges hampering its deployment is a contribution toward the UN advocacy. The potential of wind energy and their technologies in terms of the turbine types: Horizontal Axis Wind Turbines (HAWT) and Vertical Axis Wind Turbines (VAWT) including their mix were reviewed. Looking at the pros and cons of both the HAWT and the VAWT, and those of Savonius and Darrieus, it is imperative to strike a balance using their combinations. Such a hybrid offers the benefit of harnessing the gains on either side of the divide.  This is the reason attention is being devoted to research and development on combined VAWT in order to optimize the low starting torque of a Savonius with the high-performance coefficient of the Darrieus as the efficiency of VAWT increases when combined together with diverse modifications.  With the volume of on-going research targeted at the implementation challenges and various design considerations and practices to solve the problems, it is certain that these impediments will be tackled technologically and policy wise and society will be on its way to better utilization of enormous wind energy resources via interception using wind turbines. The technical challenges on the pathway towards the smooth implementation of wind energy technologies were identified to include output fluctuations and intermittencies; and to which solutions were proffered to include the need for a technology to always align and realign the blade position in a way as to maximally interact with the current prevailing wind direction and another to reinforce the rotors rotational speed with an appropriate speed required to meet up the rated output. It was recommended that attention be devoted to research and development on the combined vertical axis wind turbine (VAWT) in order to optimize the high starting torque of the Savonius turbine with the high-performance coefficient of the Darrieus turbine.
风能资源利用:必要性、拦截技术和实施挑战综述
不可再生能源的持续使用对地球大气和人类造成了很大的危害。国际上一直大力提倡增加可再生能源在全球能源使用中的份额。在这项工作中,风能被认为是一种可行的可再生能源。可再生能源,重点是风能、风力涡轮机及其类型、替代其他有害能源的需求以及阻碍其部署的相关挑战,是对联合国倡导的贡献。从风力机类型:水平轴风力机(HAWT)和垂直轴风力机(VAWT)及其组合两方面综述了风能及其技术的潜力。看看HAWT和VAWT的优缺点,以及Savonius和Darrieus的优缺点,必须使用它们的组合来取得平衡。这样一种混合模式的好处是,可以利用两党各自的收益。因此,为了优化Savonius的低启动扭矩和Darrieus的高性能系数,并通过多种改装提高VAWT的效率,组合式VAWT的研究和开发备受关注。随着针对实施挑战的大量正在进行的研究以及解决问题的各种设计考虑和实践,可以肯定的是,这些障碍将在技术和政策上得到解决,社会将通过使用风力涡轮机进行拦截来更好地利用巨大的风能资源。确定了在顺利实施风能技术的道路上面临的技术挑战,包括产出波动和间歇性;他们提供的解决方案包括:需要一种技术来始终调整和重新调整叶片的位置,以最大限度地与当前的主导风向相互作用,以及另一种技术来加强转子的转速,使其达到额定输出所需的适当速度。建议对组合式垂直轴风力机(VAWT)进行研究和开发,使Savonius风力机的高启动转矩与Darrieus风力机的高性能系数达到最优化。
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