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Estimation of the Electricity Storage Volume Density of Compact SMESs of a New Concept Based on Si Microfabrication Technologies

机译:基于SI微制造技术的新概念紧凑型蓄电量密度估计

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摘要

A compact superconducting magnetic energy storage system (SMES) produced by Si micro fabrication technologies has been proposed to improve electricity storage volume density, w, in the sub-Wh/L range of conventional SMESs and to produce them at a low cost by mass production. In parallel with the experimental development reported previously, a series of trials was performed to estimate a feasible value of w based on the calculation of the magnetic field generated by the compact SMES by improving the calculation models step by step. In this work, the experimentally obtained magnetic flux density dependence of superconductive critical current density was taken into consideration for the first time in this series of trials, together with the additional improvement of the calculation models. The results of the estimation indicated that a compact SMES produced by the proposed concept can attain a w in the Wh/L range or more, ranking with or surpassing that of presently used capacitors.
机译:已经提出了一种由Si Micro制造技术生产的紧凑超导磁能存储系统(SME),以改善电力储存体积密度W,在常规Smess的亚级范围内,并以批量生产以低成本生产它们。与先前报告的实验显影并行,通过通过通过改进计算模型的步骤来计算通过改进计算模型来计算一系列试验以估计W的可行值。在这项工作中,在这一系列试验中首次考虑了实验获得的超导临界电流密度的磁通密度依赖性,以及计算模型的额外改进。估计结果表明,由所提出的概念产生的紧凑型中小企业可以在WH / L范围内或更高的范围内实现W,与目前使用的电容器的排名或超过。

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