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Numerical investigation of transient potential distribution along stress-grading on stators bars (Roebel Type)

机译:沿atromors ress rancors ressing瞬态电位分布的数值调查(roebel型)

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This paper presents the potential distribution along the stress-grading system (Roebel Bar Type) under 50 Hz sinusoidal AC voltage based on the finite element method (FEM). In order to reduce the number of mesh elements and simulation time, a comparative study of two different approaches was examined using commercial software based on the Finite Element Method. The first one is a volume approach which takes into account the thickness of the stress-grading system. The second is the surface approach where the stress-grading system is treated as a specific boundary condition. The investigations have focused on the comparison of the surface potential and electric field distributions along the stress-grading system as well as the number of mesh elements and simulation time using 2D-axisymetric finite element method. The results obtained showed that the surface approach is the best method as it provides the same results as the volume approach with less mesh elements. In addition, a good agreement was found qualitatively as well as quantitatively between numerical and experimental results. Thus, the numerical study provides an alternative to calculate the surface potential distribution along the stress grading with sufficient accuracy using surface approach.
机译:本文基于有限元法(FEM),呈沿50Hz正弦波电压下的应力分级系统(Roebel型)沿着应力分级系统(Roebel型)的电位分布。为了减少网格元素的数量和模拟时间,使用基于有限元方法的商业软件检查两种不同方法的比较研究。第一个是一种体积方法,其考虑了应力分级系统的厚度。第二是将应力分级系统被视为特定边界条件的表面方法。研究专注于沿着应力分级系统的表面电位和电场分布的比较以及使用2D轴轴别有限元方法的网格元素和模拟时间的数量。获得的结果表明,表面方法是最好的方法,因为它提供了与具有较少网格元素的体积方法相同的结果。此外,在数值和实验结果之间的定性和定量地发现了一个良好的一致性。因此,数值研究提供了一种替代方案来计算沿着应力分级的表面电位分布,其使用表面方法充分精度。

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