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A study of cost reduction on the SMES system toroidal coil system with aluminum-stabilized NbTi CIC conductor

机译:铝稳定NbTi CIC导体的SMES系统环形线圈系统的成本降低研究

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Superconducting magnetic energy (SMES) is a promising technology for electric utility stabilization of transmission, load compensation, and frequency regulation. This paper presents the results of a study to reduce the capital cost of an SMES system. The study focused on a toroidal-shaped superconducting coil system and concerned both 100 MW/15 kWh SMES for stabilization on transmission and 100 MW/15 kWh SMES for load compensation and frequency regulation. The charge/discharge ratio(#kappa#) was optimized in consideration of the economical efficiency of the whole SMES system, and thereby #kappa# = 0.52 for small-scale SMES and #kappa#=0.86 for medium-scale SMES were obtained. To reduce the cost of a superconducting coil system, the system's design should be based on the concepts of a compact, a simple structure and small material amount. The aspect ratio of a toroidal coil system and that of a solenoid unit coil are determined from the viewpoints of minimum material amount. Aluminum-stabilized forced-flow superconductors have been newly proposed to achieve high voltage and high magnetic-field design in correspondence with small coils and reduced coil-turn numbers. New oxidized techniques for the aluminum surface of the stabilizer have been developed and the structure of the superconductor is designed simply and symmetrically to reduce manufacturing cost and ac loss. The superconductor's favorable performances have been confirmed through short sample tests. These results provide a strong incentive for utilities to encourage and support the development of SMES cost-reduction technology.
机译:超导磁能(SMES)是一种用于电力公用事业稳定传输,负载补偿和频率调节的技术。本文介绍了降低SMES系统投资成本的研究结果。该研究集中在环形超导线圈系统上,涉及用于稳定传输的100 MW / 15 kWh SMES和用于负载补偿和频率调节的100 MW / 15 kWh SMES。考虑到整个SMES系统的经济效率来优化充电/放电比(#kappa#),从而获得用于小规模SMES的#kapp#= 0.52和用于中规模SMES的#kappa#= 0.86。为了降低超导线圈系统的成本,系统的设计应基于紧凑,结构简单和材料量少的概念。从最小材料量的观点确定环形线圈系统的纵横比和螺线管单元线圈的纵横比。已经提出了铝稳定的强制流超导体,以实现与小线圈和减少的线圈匝数相对应的高电压和高磁场设计。已经开发出用于稳定剂的铝表面的新的氧化技术,并且超导体的结构被简单且对称地设计以降低制造成本和交流损耗。超导体的良好性能已通过简短的样品测试得到了证实。这些结果为公用事业鼓励和支持SMES降低成本技术的发展提供了强有力的动力。

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