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Double pancake superconducting coil design for maximum magnetic energy storage in small scale SMES systems

机译:双煎饼超导线圈设计可在小型SMES系统中最大程度地存储磁能

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摘要

Electrical power quality and stability is an important issue nowadays and technology of Superconducting Magnetic Energy Storage systems, SMES, has brought real power storage capability to power systems. Therefore, optimum SMES design to achieve maximum energy with the least length of tape has been quite a matter of concern. This paper provides an approach to design optimization of solenoid and toroid types of SMES, ensuring maximum possible energy storage. The optimization process, based on Genetic Algorithm, calculates the operating current of superconducting tapes through intersection of a load line with the surface indicating the critical current variation versus the parallel and perpendicular components of magnetic flux density. FLUX3D simulations of SMES have been utilized for energy calculations. Through numerical analysis of obtained data, formulations have been obtained for the optimum dimensions of superconductor coil and maximum stored energy for a given length and cross sectional area of superconductor tape. (C) 2016 Elsevier Ltd. All rights reserved.
机译:电能质量和稳定性是当今的一个重要问题,超导磁储能系统SMES技术为电力系统带来了真正的储能能力。因此,以最小的磁带长度实现最大能量的最佳SMES设计一直是一个值得关注的问题。本文为SMES的螺线管和环形类型的设计优化提供了一种方法,以确保最大可能的能量存储。基于遗传算法的优化过程通过负载线与表面的交点计算超导带的工作电流,表明临界电流变化与磁通密度的平行和垂直分量的关系。 SMES的FLUX3D模拟已用于能量计算。通过对获得的数据进行数值分析,获得了超导体线圈的最佳尺寸和给定长度和横截面积的最大储能的公式。 (C)2016 Elsevier Ltd.保留所有权利。

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