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Modeling and Measurements on a Finite Rectangular Conducting Plate in an Eddy Current Damper

机译:涡流阻尼器中有限矩形导电板的建模与测量

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摘要

This paper concerns the modeling of an eddy current damper with a finite conducting plate. In the eddy current damper, a finite rectangular conducting plate is moving between cuboidal magnets. The first step of the modeling method is based on an infinite conducting plate. For this infinite conducting plate, the eddy current density is derived using two different methods, the scalar potential method and the vector potential method. The finite boundaries of the conducting plate are included by means of the method of images in two dimensions and, therewith, complete the model. By applying the method of images, the accuracy of the models for calculating the damping coefficient is significantly improved. The assumption of an infinite conducting plate gives less than 15% error for a conducting plate with at least twice the dimensions of the permanent magnet. Applying the method of images reduces the modeling error for a conducting plate with two times the permanent-magnet dimensions to less than 3% in respect to a finite-element model. For the verification of the semianalytical model, measurements are performed. For a variation of the plate width, the presented semianalytical model has less than 5% discrepancy with respect to the measurements.
机译:本文涉及具有有限导电板的涡流阻尼器的建模。在涡流阻尼器中,一个有限的矩形导电板在长方体磁体之间移动。建模方法的第一步是基于无限的导电板。对于该无限导电板,使用标量电势方法和矢量电势方法两种不同的方法得出涡流密度。借助于二维图像方法包括导电板的有限边界,并由此完成模型。通过应用图像方法,显着提高了用于计算阻尼系数的模型的准确性。对于具有至少两倍于永磁体尺寸的导电板,假定无限的导电板给出的误差小于15%。应用图像方法可以将具有两倍永磁体尺寸的导电板的建模误差降低到相对于有限元模型的3%以内。为了验证半分析模型,执行测量。对于板宽度的变化,提出的半分析模型相对于测量值的差异小于5%。

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