Modeling of a finite, rectangular, conducting plate in an eddy current damper

K. Pluk, B. Gysen, J. Janssen, E. Lomonova, J. Jansen
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引用次数: 7

Abstract

This paper presents and employs the method of images in two dimensions on an eddy current damper with a finite conducting plate. The eddy current damper consists of a finite rectangular conducting plate which is moving between cuboidal magnets. The first modeling step is based on an infinite conducting plate. The method of images in two dimensions is used to include the finite boundaries of the conducting plate and to complete the model. By applying the method of images the modeling accuracy of the damping coefficient significantly improves. This paper shows that the assumption of an infinite conducting plate gives less than 15 % error if the conducting plate has at least twice the dimensions of the permanent magnet. With the application of the method of images, the modeling error for a conducting plate with twice the permanent magnet dimensions decreases to less than 3 % with respect to finite element modeling.
涡流阻尼器中有限矩形导电板的建模
本文提出并应用了有限导板涡流阻尼器的二维成像方法。涡流阻尼器由一个在立方体磁体之间移动的有限矩形导电板组成。第一步建模是基于一个无限导电板。采用二维成像的方法,将导板的有限边界包括在内,完成了模型的建立。采用图像法,显著提高了阻尼系数的建模精度。本文表明,如果导体板的尺寸至少为永磁体的两倍,则在无限导体板的假设下误差小于15%。采用图像法对两倍永磁体尺寸的导电板进行建模,与有限元建模相比,误差降低到3%以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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