高温超导磁通切换电机励磁线圈电磁力计算
TM153%TM31; 针对高温超导磁通切换电机中交变的电枢反应磁场使得高温超导励磁线圈产生形变,致使高温超导励磁线圈发生物理性损坏,影响电机安全稳定运行这一问题,以静密封高温超导磁通切换电机为例,对其高温超导励磁线圈的匝间电磁力进行了研究.基于超导线圈分离模型,在计及迈斯纳效应和趋肤效应的条件下,提出了一种高温超导磁通切换电机中跑道型超导线圈直线部分以及弯曲部分的电磁力计算方法,并在此基础上计算了超导线材的匝间电磁力.匝间电磁力计算结果表明,超导线圈的最外匝线材受到的电磁力最小,但受到同一线圈中其余匝线材作用的合力最大.为验证理论分析的正确性,采用三维有限元分析法,进一步计算并得到了高温超导...
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Published in | 电机与控制学报 Vol. 24; no. 7; pp. 82 - 89 |
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Main Authors | , |
Format | Journal Article |
Language | Chinese |
Published |
中国石油大学(华东)新能源学院,山东青岛,266580
01.07.2020
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Subjects | |
Online Access | Get full text |
ISSN | 1007-449X |
DOI | 10.15938/j.emc.2020.07.009 |
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Abstract | TM153%TM31; 针对高温超导磁通切换电机中交变的电枢反应磁场使得高温超导励磁线圈产生形变,致使高温超导励磁线圈发生物理性损坏,影响电机安全稳定运行这一问题,以静密封高温超导磁通切换电机为例,对其高温超导励磁线圈的匝间电磁力进行了研究.基于超导线圈分离模型,在计及迈斯纳效应和趋肤效应的条件下,提出了一种高温超导磁通切换电机中跑道型超导线圈直线部分以及弯曲部分的电磁力计算方法,并在此基础上计算了超导线材的匝间电磁力.匝间电磁力计算结果表明,超导线圈的最外匝线材受到的电磁力最小,但受到同一线圈中其余匝线材作用的合力最大.为验证理论分析的正确性,采用三维有限元分析法,进一步计算并得到了高温超导励磁线圈的匝间电磁力,有限元计算结果验证了该计算方法的正确性. |
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AbstractList | TM153%TM31; 针对高温超导磁通切换电机中交变的电枢反应磁场使得高温超导励磁线圈产生形变,致使高温超导励磁线圈发生物理性损坏,影响电机安全稳定运行这一问题,以静密封高温超导磁通切换电机为例,对其高温超导励磁线圈的匝间电磁力进行了研究.基于超导线圈分离模型,在计及迈斯纳效应和趋肤效应的条件下,提出了一种高温超导磁通切换电机中跑道型超导线圈直线部分以及弯曲部分的电磁力计算方法,并在此基础上计算了超导线材的匝间电磁力.匝间电磁力计算结果表明,超导线圈的最外匝线材受到的电磁力最小,但受到同一线圈中其余匝线材作用的合力最大.为验证理论分析的正确性,采用三维有限元分析法,进一步计算并得到了高温超导励磁线圈的匝间电磁力,有限元计算结果验证了该计算方法的正确性. |
Author | 马祎楠 王玉彬 |
AuthorAffiliation | 中国石油大学(华东)新能源学院,山东青岛,266580 |
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Keywords | 电磁力 高温超导 迈斯纳效应 有限元分析 磁通切换电机 失超 |
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Title | 高温超导磁通切换电机励磁线圈电磁力计算 |
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