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基于复合形法的飞轮转子储能优化设计 被引量:2
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作者 汤双清 李庆东 +1 位作者 周东伟 胡兰兰 《机械》 2017年第3期48-51,54,共5页
储能密度是储存能量的主要技术指标,优化飞轮的重要目的就是提高其储能密度。本文建立了一种储能优化模型,应用平面应力分析,利用复合形法的原理和MATLAB软件,取得飞轮转子内外半径值的一组优化参数,结果是飞轮电池转子储能密度相比优... 储能密度是储存能量的主要技术指标,优化飞轮的重要目的就是提高其储能密度。本文建立了一种储能优化模型,应用平面应力分析,利用复合形法的原理和MATLAB软件,取得飞轮转子内外半径值的一组优化参数,结果是飞轮电池转子储能密度相比优化前增加一倍。这对提升飞轮储能密度、减少飞轮失效、提高飞轮使用寿命具有重大意义。 展开更多
关键词 储能密度 复合形法 飞轮使用寿命
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Improving Kinetic Energy Storage for Vehicles through the Combination of Rolling Element and Active Magnetic Bearing
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作者 Manes Recheis Armin Buchroithner +4 位作者 Ivan Andrasec Thomas Gallien Bernhard Schweighofer Michael Bader Hannes Wegleiter 《Journal of Energy and Power Engineering》 2014年第7期1323-1332,共10页
The demand for short term energy storage providing high power for electric and hybrid-electric vehicles is increasing drastically. Stationary FESS (flywheel energy storage systems) is established as UPS (uninterrup... The demand for short term energy storage providing high power for electric and hybrid-electric vehicles is increasing drastically. Stationary FESS (flywheel energy storage systems) is established as UPS (uninterruptible power supply) and represent an emerging market. In contrast, mobile FESSs are currently only used in a few application, e.g., in motor sports. To enable a wider use in personal and public transportation the life-span of the flywheel's bearings needs to be increased significantly. This paper presents an alternative approach to extend the lifespan of the flywheel's bearings significantly by using a CREAMB (combination of rolling element and active magnetic bearings). 展开更多
关键词 Flywheel energy storage system mechanical battery resilient bearing mount rolling element bearing active magnetic bearing life-span.
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