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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Stress Analysis of HTS Magnet for a 600 kJ SMES
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Stress Analysis of HTS Magnet for a 600 kJ SMES

机译:600 kJ SMES高温超导磁体的应力分析

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摘要

Auto Tuning Niching Genetic Algorithm was used to design optimal HTS magnets for the 600 kJ class SMES system under several design constraint conditions. Constraint conditions were operation loss of magnet (less than 2 W), inductance of magnet (less than 24 H), the number of Double Pancake Coils (about 10 DPCs), the number of turns of DPC (less than 300 turns), outer diameter of DPC (close to 800 mm) and total length of HTS wire in a DPC (less than 500 m). As a result of optimum design, we obtained design parameters for the 600 kJ SMES magnet according to two operating currents, 360 A and 370 A. However, even though the HTS magnet was designed optimally in respect to the electromagnetics, consideration of mechanical integrity due to the stress by Lorentz force must not be neglected for the stable operation of the SMES system. Therefore, we developed a program, through the Finite Element Method (FEM), for stress analysis due to Lorentz force in operation of the SMES system. In this paper, the stresses (radial and hoop stress) imposed on the designed HTS magnets were calculated by the program, and the results of stress analysis were discussed.
机译:在某些设计约束条件下,使用“自动调整Niching遗传算法”为600 kJ级SMES系统设计最佳HTS磁体。约束条件是磁体的运行损耗(小于2 W),磁体的电感(小于24 H),双煎饼线圈的数量(约10个DPC),DPC的匝数(小于300匝),外部DPC的直径(接近800毫米)和DPC中的HTS线的总长度(小于500 m)。作为最佳设计的结果,我们根据360 A和370 A两个工作电流获得了600 kJ SMES磁体的设计参数。但是,即使HTS磁体在电磁方面进行了最佳设计,也需要考虑机械完整性为了使SMES系统的稳定运行,不能忽略因洛伦兹力引起的应力。因此,我们通过有限元方法(FEM)开发了一个程序,用于在SMES系统运行过程中因洛伦兹力产生的应力分析。本文通过该程序计算了施加在设计的高温超导磁体上的应力(径向应力和环向应力),并讨论了应力分析的结果。

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