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Conductivity gradient optimization of superficial layer for GIL disc spacer based on finite element method and adaptive particle swarm

机译:基于有限元法和自适应粒子群的GIL盘间隔物浅表的电导率梯度优化

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The objective of this paper is to propose the conductivity distribution of artificial layer and its optimization method which can alleviate the surface E-field distortion of disc spacers. By optimization using finite element (FE) method and adaptive particle swarm, gradient conductance with the maximum surface field intensity reduced by 52.2% was obtained, and its influence on the electro-thermal power distribution of insulator was discussed.
机译:本文的目的是提出人造层的导电性分布及其优化方法,其可以减轻盘间隔物的表面E场变形。通过使用有限元(Fe)方法和自适应粒子群的优化,获得了具有52.2%的最大表面场强度的梯度电导,讨论了对绝缘体的电热配电的影响。

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