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Impact of concentration gradient of polarizable species on the electric field distribution in polymeric insulating material for HVDC cable

机译:可极化物质的浓度梯度对高压直流输电电缆聚合物绝缘材料中电场分布的影响

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摘要

The impact on the electric field distribution of a non-uniform concentration of polarizable species within cross-linked polyethylene insulation for High Voltage Direct Current (HVDC) cable is investigated. Two case studies are considered where the species are diffusing from the bulk of the insulation towards the interfaces or from the interfaces to the bulk. The first case is associated with diffusion of cross-linking byproducts that are known to be permanent dipoles. The second case is associated with diffusion of polarizable species from the interfaces (semi-conducting screens in the case of cables). A diffusion model is applied and used to derive a general expression for the polarization charge. Diffusion of by-products leads to the formation of "hetero" polarization charges adjacent to the electrodes whereas diffusion of polarizable species from the interfaces leads to the formation of ??homo?? polarization charge. Overall, the impact on the field distribution of a non-uniform concentration of polarizable species is weak when compared to space charge measurements. This suggests that inhomogeneous distribution of dipoles is unlikely the dominant phenomenon behind the heterocharges build-up in non-fully degassed XLPE samples.
机译:研究了高压直流(HVDC)电缆的交联聚乙烯绝缘层中可极化物质浓度不均匀对电场分布的影响。考虑了两个案例研究,其中物质从绝热体的大部分扩散到界面或从界面扩散到大部分。第一种情况与已知为永久偶极子的交联副产物的扩散有关。第二种情况与可极化物质从界面的扩散有关(在电缆情况下为半导电屏蔽)。应用扩散模型并将其用于导出极化电荷的一般表达式。副产物的扩散导致邻近电极的“杂”极化电荷的形成,而可极化物质从界面的扩散导致“均质”的形成。极化电荷。总体而言,与空间电荷测量相比,非均匀浓度的可极化物质对场分布的影响微弱。这表明在未完全脱气的XLPE样品中,偶极子的不均匀分布不太可能是杂电荷积聚的主要现象。

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