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Partial Discharge in Nanofluid Insulation Material with Conductive and Semiconductive Nanoparticles

机译:具有导电和半导电纳米粒子的纳米流体绝缘材料的局部放电

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摘要

This study provides a thorough investigation of partial discharge (PD) activities in nanofluid insulation material consisting of different types of nanoparticles, which are conductive and semiconductive when subjected to high voltage stress is presented. Nanofluids have become a topic of interest because they can be an alternative to liquid insulation in electrical apparatus due to their promising dielectric strength and cooling ability. However, during in-service operation, PDs can occur between conductors in the insulation system. Therefore, this study presents the behavior of PDs within nanofluid dielectric materials consisting of conductive and semiconductive nanoparticles. The results show that there is an improvement in the PD resistance and a reduction in the tan delta of nanofluids at power frequency after the incorporation of conductive or semiconductive nanoparticles in the nanofluid oil. However, the most suitable concentration of conductive and semiconductive nanoparticles in the base fluid was found to be, respectively, 0.01 g/L and 1.0 g/L at PD inception and PD steady-state conditions. The clustering of nanoparticles in a nanofluid suspension due to PD activities is also discussed in this study.
机译:这项研究提供了对由不同类型的纳米粒子组成的纳米流体绝缘材料中局部放电(PD)活性的彻底研究,提出了承受高压应力的导电性和半导电性。纳米流体已经成为人们关注的话题,因为由于其有希望的介电强度和冷却能力,它们可以替代电气设备中的液体绝缘。但是,在使用过程中,PD可能会在绝缘系统中的导体之间出现。因此,本研究提出了由导电和半导电纳米颗粒组成的纳米流体介电材料中PD的行为。结果表明,在纳米流体油中掺入导电或半导电纳米颗粒后,在电源频率下,PD电阻得到改善,纳米流体的损耗角正切减小。然而,发现在PD开始和PD稳态条件下,基础流体中最合适的导电和半导电纳米颗粒浓度分别为0.01 g / L和1.0 g / L。在这项研究中,还讨论了由于PD活性而在纳米流体悬浮液中形成的纳米颗粒簇集。

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