Retrospective and perspectives of the superconducting magnetic levitation (sml) technology applied to urban transportation

R. Stephan, F. Costa, E. Rodriguez, Z. Deng
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引用次数: 4

Abstract

A review of the Superconducting Magnetic Levitation (SML) technology applied to urban transportation will be presented. The historical time line will be highlighted, pointing out the pioneering efforts at Southwest Jiatong University (SWJTU), China, followed by the Supra Trans project in IFW-Dresden, Germany, and the MagLev-Cobra project in UFRJ, Brazil. Background:  Details of the MagLev-Cobra project, the first, and until today the single one, applying the SML technology that counts with a real scale prototype, operating regularly in open air, will be disclosed. The inauguration of the MagLev-Cobra project was on the 1st October 2014, the last day of the “22nd International Conference on Magnetically Levitated Systems and Linear Drives (MAGLEV)” held in Rio de Janeiro. Curiously, this day coincides with the 50th anniversary of the successful operation of the Shinkansen in Tokyo. On the 1st October 1964, the first high-speed wheel and rail train in the world was inaugurated in time for the first Olympic Games that took place in Asia. This historical coincidence is a good omen for the MagLev-Cobra project. In fact, since October 2014, the system operates regularly for demonstration at the UFRJ Campus, every Tuesday. More than 12.000 visitors have already had the opportunity to take a test ride. Aim: The Proceedings of the MAGLEV conferences, which first edition dates back to 1977 (http://www.maglevboard.net), are the documentary files of the importance of this achievement. Initially, the methods named Electromagnetic Levitation (EML) and Electrodynamic Levitation (EDL) were considered. Methods: At the end of last century, due to the availability of Rare Earth Permanent Magnets and High Critical Temperature Superconductors (HTS), an innovative levitation method, called Superconducting Magnetic Levitation (SML), started to be considered. This method is based on the flux pinning effect property of HTS in the proximity of magnetic fields given by rare earth permanent magnets. The first experiments with SML, as expected, were small scale prototypes, or laboratory vehicles for one, two or four passengers, proposed mainly by researchers from Germany, China and Brazil. The Proceedings of the 16th MAGLEV, held in year 2000, confirms this fact. After 14 years of research and development, the team of the Laboratory of Applied Superconductivity (LASUP) of UFRJ achieved the construction of the first real scale operational SML vehicle in the world. Results: This retrospective will be followed by a comparison with the EML technology, that has already four urban commercial systems, will be presented and the application niches delimited. Conclusion: The perspectives of the MagLev-Cobra project and the cooperation efforts with China to turn it a commercial experience will finish the paper. As will be explained, before the commercial application of the MagLev-Cobra technology, the system must be certified and the technical, economic and environmental viability for a first deployment concluded.
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超导磁悬浮技术在城市交通中的应用回顾与展望
综述了超导磁悬浮技术在城市交通中的应用。重点介绍了历史时间线,指出了中国西南交通大学(SWJTU)的开创性努力,随后是德国IFW-Dresden的Supra Trans项目,以及巴西UFRJ的磁悬浮眼镜蛇项目。背景:MagLev-Cobra项目的细节将被披露,该项目是第一个,也是迄今为止唯一一个应用SML技术的项目,该技术与真实规模的原型相匹配,定期在露天运行。2014年10月1日,在里约热内卢举行的“第22届国际磁悬浮系统和线性驱动(MAGLEV)会议”的最后一天,MAGLEV - cobra项目揭幕。奇怪的是,这一天恰好是东京新干线成功运营50周年。1964年10月1日,世界上第一列高速轮轨列车为在亚洲举行的第一届奥运会揭幕。这一历史巧合对磁悬浮眼镜蛇项目来说是个好兆头。事实上,自2014年10月以来,该系统每周二在UFRJ校区定期运行进行演示。超过1.2万名游客已经有机会试驾。目的:第一版的磁浮会议记录可以追溯到1977年(http://www.maglevboard.net),是这一成就重要性的文献文件。最初,我们考虑了电磁悬浮(EML)和电动力悬浮(EDL)两种悬浮方法。方法:上世纪末,由于稀土永磁体和高温超导体(HTS)的出现,人们开始考虑一种创新的悬浮方法——超导磁悬浮(SML)。该方法是基于高温超导在稀土永磁体磁场附近的磁钉效应特性。正如预期的那样,SML的第一次实验是小规模的原型,或者是一辆、两辆或四辆乘客的实验室车辆,主要由德国、中国和巴西的研究人员提出。2000年举行的第16届磁悬浮列车会议记录证实了这一事实。经过14年的研究和开发,UFRJ应用超导实验室(LASUP)团队实现了世界上第一个实际规模的运行SML车辆的建造。结果:在回顾之后,将与EML技术进行比较,EML技术已经有四个城市商业系统,将提出并划定应用范围。结束语:MagLev-Cobra项目的前景以及与中国合作将其转化为商业经验的努力将结束本文。如前所述,在MagLev-Cobra技术的商业应用之前,必须对系统进行认证,并确定首次部署的技术、经济和环境可行性。
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