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DC prestressing effect on breakdown characteristic of insulating paper in liquid nitrogen and insulating oil

机译:直流预应力对液氮和绝缘油中绝缘纸击穿特性的影响

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Currently, high temperature superconducting (HTS) cables are developed mainly as AC cables with PPLP-liquid nitrogen composite insulating system. On the other hand, solar and wind power are expected as alternative energy of fossil fuels in the future. DC transmission using superconducting technology having low transmission loss and environmental burden is most suitable for such new energies. However, DC HTS cable may raise the problem that charge injection may degrade the insulating performance, which is the same as the problem in existing DC oil immersion cables. Moreover, the influence of charge injection on breakdown characteristics of PPLP in liquid nitrogen (LN) is not clarified yet. In this paper, DC prestressing effects on impulse breakdown strength (Fb) of PPLP was investigated, and the charge injection model in LN was discussed from the conventional knowledge to charge injection in DDB oil. As a result, the opposite polarity relations in impulse Fb and the prestressing effects in LN appeared compared with the results in DDB oil. The DC prestress effect on impulse Fb in DDB oil can be explained based on the charge injection model in LN with the opposite polarity charge injection. Therefore, the difference of breakdown characteristics of PPLP in DDB oil and in LN are influenced by the polarity of the charge that is easy to inject into KP layer and can explain using the charge injection model developed for the breakdown characteristics in LN.
机译:目前,高温超导(HTS)电缆主要开发为具有PPLP-液氮复合绝缘系统的AC电缆。另一方面,预计未来化石燃料的替代能源将是太阳能和风力。使用具有低传输损耗和环境负担的超导技术的直流传输最适合这种新能量。然而,DC HTS电缆可以提高电荷注入可能降低绝缘性能的问题,这与现有直流油浸没电缆中的问题相同。此外,尚未澄清电荷注射喷射对PPLP中PPLP的击穿特性的影响。本文研究了对PPLP脉冲击穿强度(FB)的DC预应力效应,并从常规知识中讨论了LN中的电荷注射模型,以在DDB油中电荷注射。结果,与DDB油的结果相比,LN中的脉冲FB的相反极性关系及LN中的预应力效应出现。可以基于LN中的电荷注入模型来解释对DDB油中脉冲FB的DC预应力效应,具有相反的极性电荷注入。因此,DDB油和LN中PPLP的击穿特性的差异受到易于喷射到KP层的电荷极性的影响,并且可以使用为LN中开发的击穿特性开发的电荷注射模型来解释。

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