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Analytical method for design and thermal evaluation of a long-term flywheel energy storage system

机译:长期飞轮储能系统的设计和热评估分析方法

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This paper presents a novel analytical method for electro-mechanical design of a high speed long-term flywheel energy storage system and thermal evaluation of possible operating modes of the system. Flywheel's composite shell rotor along with the motor/generator unit are assumed to be placed into a sealed vacuum chamber, which presents a challenge of heat transfer, produced by rotor losses. Developed method takes into account thermal radiation properties of the rotor and is realised using Mathcad software, which allows for quick investigation of any flywheel configuration. The method involves calculations for preliminary rotor sizing and determining achievable operation modes, while keeping the rotor under a specified temperature limit. Results of using this method for studying dependencies of thermal performance on initial system parameters are presented and conclusions are drawn. Based on the conducted study, recommendations on system design considerations are given.
机译:本文介绍了一种新型分析方法,用于高速长期飞轮储能系统的机电设计和系统可能的操作模式的热评价。飞轮的复合壳转子以及电动机/发电机单元被假定放入密封的真空室中,这呈现了通过转子损耗产生的热传递的挑战。开发的方法考虑了转子的热辐射特性,并使用Mathcad软件实现,这允许快速调查任何飞轮配置。该方法涉及初步转子尺寸的计算和确定可实现的操作模式,同时将转子保持在指定的温度限制下。提出了使用该方法研究初始系统参数的热性能依赖性的结果,得出结论。根据进行的研究,给出了关于系统设计考虑的建议。

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