A Study of Cost Reduction on the SMES System

K. Asano, K. Takeuchi, K. Tsutsumi, S. Nagaya, N. Hirano, S. Kouso
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引用次数: 5

Abstract

Superconducting magnetic energy storage (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 100MW/15kWh SMES for stabilization on transmission and 100MW/500kWh SMES for load compensation and frequency regulation. The charge/discharge ratio (k) was optimized in consideration of the economical efficiency of the whole SMES system, and thereby k=0.52 for small-scale SMES and k=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 oxidization 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 supercondutor'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.
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中小企业体系的成本降低研究
超导磁储能技术在电力稳定传输、负荷补偿和频率调节等方面具有广阔的应用前景。本文提出了降低中小企业系统资金成本的研究结果。该研究以环形超导线圈系统为研究对象,研究了100MW/15kWh超导线圈系统的输电稳定和100MW/500kWh超导线圈系统的负载补偿和频率调节。考虑到整个中小企业系统的经济性,对充放电比(k)进行优化,得到小规模中小企业充放电比k=0.52,中型中小企业充放电比k=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、结构简单和材料用量少的概念。环形线圈系统的长径比和螺线管单元线圈的长径比是从最小材料量的角度确定的。为了实现高电压和高磁场的设计,新提出了铝稳定强迫流超导体,以满足小线圈和减少线圈匝数的要求。开发了新的稳定剂铝表面氧化工艺,并设计了结构简单、对称的超导体,以降低制造成本和交流损耗。超导体的良好性能已通过短样品试验得到证实。这些结果为公用事业公司鼓励和支持中小企业开发降低成本的技术提供了强有力的激励。
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