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Cost savings and prospects for applications of micro superconducting magnetic energy storage (SMES) using high temperature superconductors

机译:使用高温超导体的微超导磁能存储器(SMES)的成本节省和应用前景

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Recently, interest in superconducting magnetic energy storage (SMES) systems of approximately 1-MJ storage capacity has grown among potential industry and utility users. A large fraction of the cost is in the refrigeration system which is required to maintain a superconducting coil. The objective of the project described was to determine possible cost savings from the use of high-temperature superconductors (HTSs). An additional goal was to identify development needs for HS materials to be useful in small SMES systems. The approach to this assessment was to build a computer model with assumed HTS conductor properties to establish coil configurations for a small SMES (1-MJ/1-MW) system. A second computer model was developed to estimate refrigeration requirements. A third model was used to estimate and sum component costs. A conventional low-temperature superconductor (LTS) system was also modeled for comparison.
机译:最近,潜在的工业和公用事业用户对存储容量约为1MJ的超导磁能存储(SMES)系统的兴趣不断增长。成本的很大一部分是用于维护超导线圈的制冷系统。所描述项目的目的是确定通过使用高温超导体(HTS)可能节省的成本。另一个目标是确定在小型SMES系统中有用的HS材料的开发需求。进行此评估的方法是使用假定的HTS导体属性构建计算机模型,以建立小型SMES(1-MJ / 1-MW)系统的线圈配置。开发了第二个计算机模型来估计制冷需求。第三种模型用于估算和汇总组件成本。还对常规低温超导体(LTS)系统进行了建模以进行比较。

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