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Techno-economic analysis of a megawatt-scale thermoplastic resin wind turbine blade

机译:兆瓦级热塑性树脂风力涡轮机叶片的技术经济分析

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Two-part, in-situ reactive thermoplastic resin systems for composite wind turbine blades have the potential to lower the blade cost by decreasing cycle times, capital costs of both tooling and equipment, and energy consumption during manufacturing, and enabling recycling at the end of the blade life. This paper describes a techno-economic model used to estimate the cost of a thermoplastic wind turbine blade relative to a baseline thermoset epoxy blade. It was shown that a 61.5-m thermoplastic blade costs 4.7% less than an equivalent epoxy blade. Even though the thermoplastic resin is currently more expensive than epoxy, this cost reduction is primarily driven by the decreased capital costs, faster cycle times, and reduced energy requirements and labor costs. Although thermoplastic technology for resin infusion of wind turbine blades is relatively new, these results suggest that it is economically and technically feasible and warrants further research. Published by Elsevier Ltd.
机译:用于复合材料风力涡轮机叶片的两部分式原位反应性热塑性树脂系统有潜力通过缩短周期时间,减少工装和设备的资本成本以及制造过程中的能源消耗并在最终回收时降低叶片成本。刀片寿命。本文介绍了一种技术经济模型,用于估算热塑性风力涡轮机叶片相对于基准热固性环氧叶片的成本。结果表明,一个61.5米的热塑性叶片成本比同等的环氧叶片低4.7%。尽管目前热塑性树脂比环氧树脂贵,但这种成本降低的主要原因是资本成本的降低,周期时间的缩短以及能源需求和人工成本的降低。尽管用于风力涡轮机叶片树脂灌注的热塑性技术相对较新,但这些结果表明该技术在经济和技术上都是可行的,值得进一步研究。由Elsevier Ltd.发布

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