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Magnetic bearings for free-piston Stirling engines

机译:自由活塞斯特林发动机的磁性轴承

摘要

The feasibility and efficacy of applying magnetic bearings to free-piston Stirling-cycle power conversion machinery currently being developed for long-term space missions are assessed. The study was performed for a 50-kWe Reference Stirling Space Power Converter (RSSPC) which currently uses hydrostatic gas bearings to support the reciprocating displacer and power piston assemblies. Active magnetic bearings of the attractive electromagnetic type are feasible for the RSSPC power piston. Magnetic support of the displacer assembly would require unacceptable changes to the design of the current RSSPC. However, magnetic suspension of both displacer and power piston is feasible for a relative-displacer version of the RSSPC. Magnetic suspension of the RSSPC power piston can potentially increase overall efficiency by 0.5 to 1 percent (0.1 to 0.3 efficiency points). Magnetic bearings will also overcome several operational concerns associated with hydrostatic gas bearing systems. These advantages, however, are accompanied by a 5 percent increase in specific mass of the RSSPC.
机译:评估了将磁性轴承应用于目前正在为长期太空飞行而开发的自由活塞斯特林循环动力转换机械的可行性和有效性。这项研究是针对50 kWe参考斯特林空间功率转换器(RSSPC)进行的,该转换器目前使用静液压气体轴承来支撑往复式置换器和功率活塞组件。对于RSSPC动力活塞,具有吸引力的电磁类型的主动磁性轴承是可行的。置换器组件的磁性支撑将要求对当前RSSPC的设计进行不可接受的更改。但是,对于RSSPC的相对置换器版本,置换器和动力活塞的磁悬浮都是可行的。 RSSPC动力活塞的磁悬浮可将整体效率提高0.5%至1%(效率点为0.1至0.3)。电磁轴承还将克服与静压气体轴承系统相关的几个操作问题。然而,这些优点伴随着RSSPC比重增加5%。

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