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Weight and cost reduction of a small wind turbine blade

机译:小型风力发电机叶片的重量和成本降低

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摘要

Wind power is well accepted renewable energy source. Large wind turbines has occupied respectable share in renewable energy market. Whereas, the small wind turbines are along the way of continuous progress in terms of various aspects. Development of small wind turbine parts is one of the significant focuses of some researchers. Wind turbine blades plays important role in conversion of kinetic energy of wind into mechanical energy. The light weight and efficient blade is always preferred by the designer because of many advantages. This work is focused on weight reduction of a one kilowatt wind turbine blade and hence the cost. In this paper four new blade models are proposed and analyzed with the stated objective to reduce weight and cost of the blades. The first three models consists of 3 mm Glass Fiber Reinforced Plastic outer layers and core of low density Poly Vinyl Chloride foam, core of low density Balsa wood and low density fiber reinforced foam respectively. Fourth model consists of 0.5 mm carbon fiber, 2.5 mm GFRP and core of low density fiber reinforced foam. Finite element analysis of existing and proposed blades is carried out and results are analyzed. Third model is finalized and manufactured based on the finite element analysis results, weight, and cost.
机译:风力是公认的可再生能源。大型风力涡轮机在可再生能源市场中占有可观的份额。鉴于小型风力涡轮机在各个方面都在不断发展。小型风力涡轮机零件的开发是一些研究人员的重要重点之一。风力涡轮机叶片在将风的动能转换成机械能方面发挥着重要作用。重量轻且效率高的刀片始终是设计人员的首选,因为它具有许多优点。这项工作的重点是减轻一千瓦风力涡轮机叶片的重量,从而降低成本。本文提出并分析了四个新的叶片模型,其既定目标旨在减少叶片的重量和成本。前三个模型分别由3毫米玻璃纤维增​​强塑料外层和低密度聚氯乙烯泡沫芯,低密度轻木和低密度纤维增强芯组成。第四个模型由0.5毫米碳纤维,2.5毫米GFRP和低密度纤维增强泡沫的芯组成。对现有叶片和建议叶片进行了有限元分析,并对结果进行了分析。根据有限元分析结果,重量和成本确定并制造第三个模型。

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