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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Application of FEA to image-based models of electrical trees with uniform conductivity
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Application of FEA to image-based models of electrical trees with uniform conductivity

机译:FEA在电导率均匀的基于图像的电树模型中的应用

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摘要

X-ray computed tomography and serial block-face SEM have provided detailed threedimensional reconstructions of electrical trees for the first time. The application of finite element analysis (FEA) to the analysis of electrical fields in an epoxy block containing a tree is considered. Illustrations are provided by way of a number of case studies. It is shown that the limitations of FEA do not arise from the discrete nature of the meshing: rather uncertainties are more concerned with material properties in high fields on the micrometer scale, the limitations imposed by the pixel size of the imaging technique, and the discrete nature of the image reconstruction technique. For a dynamic model of tree growth space charge dynamics on the same physical scale need also to be modelled. A meshing strategy is used, calibrated against the charge simulation method, to ensure accurate but manageable computations in critical parts of a tree such as branch tips. Examples of field values are given using geometric constructs and low-field material characteristics as illustrative values. The field variation around a conducting tree structure, including the maximum field direction as a branch starts to bifurcate, is determined as an example. These yield values in excess of those expected if space charge movement was considered, but consistent with analytical calculations.
机译:X射线计算机断层扫描和串行块表面SEM首次提供了详细的三维电树重建方法。考虑了将有限元分析(FEA)应用于包含树的环氧树脂块中的电场分析。通过大量案例研究提供了插图。结果表明,有限元分析的局限性不是由网格的离散性质引起的:不确定性更多地与微米级高场中的材料特性,成像技术的像素大小以及离散性有关。图像重建技术的本质。对于树木生长的动力学模型,还需要对相同物理尺度上的电荷动力学进行建模。使用网格划分策略(针对电荷模拟方法进行了校准),以确保在树的关键部分(例如分支尖端)中进行准确但可管理的计算。场值的示例使用几何构造和低场材料特性作为说明性值给出。例如,确定围绕导电树结构的场变化,包括当分支开始分叉时的最大场方向。如果考虑空间电荷运动,这些屈服值将超过预期值,但与分析计算相符。

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