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Structure and cost scaling for intermediate size superconducting magnetic energy storage (SMES) systems

机译:中型超导磁储能(SMES)系统的结构和成本定标

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The Superconducting Magnetic Energy Storage (SMES) Engineering Test Model (ETM) was sized to be extrapolated to a full-scale utility system and only warm structural support was practical. If this constraint is removed, then smaller systems structurally reinforced with cold mass are more cost effective than supported with warm mass. Higher field is also more advantageous and thus the bore of a 20 MWh magnet is an order of magnitude smaller than an ETM. Both aluminum and stainless steel supports were considered and the weight of 1-100 MWh systems were determined. The cost of the SMES magnet scales as 0.5 power of stored energy. The cross over in stored energy where magnets supported by warm structures becomes cheaper was also determined.
机译:超导磁储能(SMES)工程测试模型(ETM)的大小可以推算到全面的公用事业系统中,只有温暖的结构支撑才是可行的。如果消除了此限制,则结构较冷的质量增强的较小系统比成本较高的系统更具成本效益。更高的磁场也是更有利的,因此20 MWh磁体的孔径比ETM小一个数量级。考虑了铝和不锈钢支架,并确定了1-100 MWh系统的重量。 SMES磁体的成本相当于存储能量的0.5功率。还确定了存储能量的交叉点,其中由温暖结构支撑的磁体变得更便宜。

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