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Quantitative assessment of finite-element models for magnetostatic field calculations

机译:磁静电场计算有限元模型的定量评估

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摘要

We present quantitative means for assessing the numerical accuracy of static magnetic field calculations in finite-element models. Our calculations use the three-dimensional Opera simulation software suite of Dassault Systemes. Our need to assess the effects of fringe fields requires such a 3D algorithm. While we do discuss and compare our approach to a method of accuracy estimation used in the Opera post-processor, our methods are generally applicable to any model using relaxation techniques in finite-element systems. For purposes of illustration, we present modeling and analysis of two types of quadrupole electromagnets presently in operation in the south arc of the Cornell Electron Storage Ring (CESR). Calculations of field multipole expansion coefficients and numerical deviations from Maxwell's equations in source-free regions are discussed, with emphasis on the dependence of their accuracy on changes to the finite-element model. Successive refinement steps in the finite-element model for the non-extraction type of CESR south arc quadrupole achieve a reduction in the RMS value of the longitudinal component of the curl vector on the magnet axis by a factor of nearly 70 from 4.38 × 10~(-2) T/m to 6.36 × 10~(-4) T/m, which is 0.0021% of the field gradient. An accuracy of 2.9% is achieved for a dodecapole coefficient of 2.4 × 10~(-4) of that of the quadrupole in the longitudinal integral of the vertical field gradient at a radius of 1cm.
机译:我们呈现用于评估有限元模型中静磁场计算的数值准确性的定量手段。我们的计算使用Dassault Systems的三维歌剧仿真软件套件。我们需要评估边缘字段的效果需要这种3D算法。虽然我们确实讨论并比较了我们对操作后处理器中使用的准确估计方法的方法,但我们的方法通常适用于有限元系统中使用松弛技术的任何模型。出于说明的目的,我们目前在康奈尔电子储存环(CESR)的南方弧中目前的两种类型的四极电磁器建模和分析。讨论了麦克斯韦地区麦克斯韦方程的场多极膨胀系数和数值偏差的计算,重点是它们准确性对有限元模型的变化的依赖性。 CESR南弧四极的非提取类型的有限元模型中的连续改进步骤可降低磁轴上卷曲载体纵向分量的RMS值的减少,近70倍近70°〜 (-2)t / m至6.36×10〜(-4)t / m,为0.0021%的场梯度。在垂直场梯度的纵向积分的半径为1cm的纵向积分中,在四轴的纵向积分的纵向积分中的24×10〜(-4)的十二张蚜系数的精度。

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