Design Considerations for High-Energy Density SMES

Design Considerations for High-Energy Density SMES
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高能量密度 SMES 的设计考虑因素

DOI:
10.1109/tasc.2017.2655627
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发表时间:
2017
影响因子:
1.8
通讯作者:
F. Forest
F. Forest
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
J. Ciceron;A. Badel;P. Tixador;F. Forest

文献摘要

被引文献

相似文献

超导储能(SMES)是一种很有前途的脉冲功率电流源技术,特别是作为电容器组的替代品供应电磁发射器(EML)。然而,它们具有低的比能量。博塞(Bobine Supraconductrice pour le Stockage d'Energie)项目利用第二代高温超导体(HTS)在液氦中的出色性能所提供的新的可能性,其目标是建造一个具有高能量密度的1 MJ SMES。关于最大化比能量的反思开始使我们思考高性能SMES和平衡SMES专用于EML供应的设计中的矛盾目标。这种应用的要求是非常高的,多参数的研究将是必要的中小企业整合在EML供应链。因此,提出了一种计算方法,旨在快速估计超导磁储能系统的性能在一个大的拓扑结构。并提出了博塞超导储能系统的设计要点。
SMES (superconducting magnetic energy storage) is a promising technology for pulse power current source, and especially as an alternative to capacitor banks to supply electromagnetic launchers (EML). Nevertheless, they have low specific energy. Taking advantage of new possibilities offered by impressive performances of second generation high-temperature superconductors (HTS) tapes in liquid helium, the BOSSE (Bobine Supraconductrice pour le Stockage d'Energie) project has the objective to build a 1 MJ SMES with high energy density. Reflection begun about maximizing specific energy has led us to think about high-performance SMES and balance of contradictory objectives in the design of SMES dedicated to EML supply. Requirements for such an application are very high and multiparameter study would be necessary to integrate an SMES in an EML supply chain. A calculation method is therefore proposed, aiming for fast estimation of SMES properties on a large set of topologies. Some elements about design of BOSSE SMES are also presented.