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A novel and economic rotor hub configuration for small wind turbines

机译:用于小型风力涡轮机的新型和经济转子毂配置

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摘要

The study puts forward a new and economic rotor hub configuration for small wind turbines. With the use of the proposed idea, the required size of timber blanks from which the blades are cut is reduced, leading to the reduction in blanks cost as well as machining process cost. To investigate the presented scheme from the structural aspect, the finite-element analysis was done on a 1 kW turbine rotor hub. The results reveal the applicability of the proposed hub as it could withstand the aerodynamic and centrifugal loadings. From the economic perspective, the cost reduction in the timber blanks and machining process is about 33% and 58% respectively compared to the conventional hub used in small turbines. This would be of interest in promoting the use of small turbines in developing countries where the cost of renewable energies is not competitive with non-renewable ones. Moreover, by using this new hub, the subtraction (machining) mass of timber during the machining process is reduced noticeably, rendering the presented hub configuration interesting from the environmental aspect. Also provided by this new configuration is the starting improvement of the turbine thanks to the lower value of the rotor inertia compared to the conventional configuration.
机译:该研究对小型风力涡轮机提出了一种新的和经济转子毂配置。通过使用所提出的想法,减少了叶片的所需尺寸的木坯坯料,导致坯料成本的降低以及加工过程成本。为了从结构方面研究所提出的方案,在1kW涡轮转子毂上进行有限元分析。结果揭示了所提出的集线器的适用性,因为它可以承受空气动力学和离心载体。从经济角度来看,与小型涡轮机中使用的传统集线器相比,木材坯料和加工过程的成本分别为约33%和58%。这对促进发展中国家中的小型涡轮机的使用感兴趣,即可再生能量的成本与不可再生的能量不竞争。此外,通过使用该新轮毂,在加工过程期间木材的减法(加工)质量明显减小,从环境方面呈现所呈现的集线器配置。通过这种新配置还提供了涡轮机的开始改进,因为与传统配置相比转子惯性的较低值较低。

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