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COMPOSITE PRODUCTION METHODS FOR A COST-EFFECTIVE AIRBORNE WIND ENERGY SYSTEM

机译:复合生产方法是一种经济高效的空中风能系统

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Airborne Wind Energy Systems (AWES) are an emerging renewable energy generation technology that use autonomously guided kites or aircraft to harvest wind power. The challenge for AWES aircraft designer is to produce a structure competitive with existing low-cost wind technology while remaining lightweight and safety compliant. This work investigates suitable materials and production methods for the wing of a multi-megawatt AWES, using a newly developed technical cost model of the wing manufacturing process. The cost model provides a breakdown of the material, labour and equipment costs for resin infusion and out-of-autoclave prepreg production methods. Analysing the breakdown of the costs for the spar caps, shear webs and the aerodynamic skins of the wing will help guide the choice of production method for a low-cost and high-performance AWES.
机译:空中风能系统(AWES)是一种新兴可再生能源发电技术,使用自主引导的风筝或飞机来收获风力。 AWES飞机设计师的挑战是生产具有现有低成本风力技术的结构,同时剩下轻质和安全兼容。 这项工作通过新开发的机翼制造工艺的技术成本模型来调查适用于多兆瓦令的机翼的合适材料和生产方法。 成本模型提供了树脂输注和up-utoclave预浸料制剂方法的材料,劳动和设备成本的崩溃。 分析翼梁,剪切网和机翼空气动力学的成本的崩溃将有助于指导生产方法的选择,以实现低成本和高性能令铺。

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