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Estimation of Dielectric Parameters of Aged Natural Ester based Insulating Liquid using Open Beaker Oxidative Ageing technique

机译:抗开烧杯氧化老化技术估计老年天然酯基绝缘液的介电学参数

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The conventional mineral oil (MO), which is used in the power and distribution transformers acts as an insulation and cooling agent. The insulation system in the high voltage apparatus, like the transformer, maintains the reliable functioning during its operational lifetime. However, the insulation system is stressed during the service and degrades in due course of time. Thus, alternate solutions to the conventional insulating system are being considered to augment the steadfastness of the transformer. The natural ester based insulating oils (NEOs) provides as a good substitute to the MO as it is biodegradable and has higher flash points and breakdown voltage. Moreover, with the addition of nanoparticles (NPs), the properties of the NEO are further enhanced. This paper provides a comparative study of some of the dielectric parameters of a natural ester-based insulating oil (NEO) and its nanofluids (NEO-NFs). The semi-conductive Titanium oxide (TiOz) NPs with a suitable weight percentage are dispersed in the base fluid to prepare the NFs. For the condition assessment of the oil samples, they are aged in an open beaker oxidative ageing (OBOA) apparatus for a duration of 500 hours to obtain the aged insulating liquids. This will help to assess the health of the oil after ageing for longer duration. A correlative study is carried out amongst the oil samples-NEO, NEO-NF, aged NEO and aged NEO-NF. It is observed that NEO-NFs performed better than the base fluid in terms of all its properties, both before and after ageing process. It is observed from the experiments that the NEO-NF with the semi- conductive TiOz NP shows substantial improvement in the dielectric properties.
机译:用于动力和分配变压器的常规矿物油(MO)用作绝缘和冷却剂。与变压器一样,高压设备中的绝缘系统在其操作寿命期间保持可靠的功能。但是,在服务期间,保温系统受到压力,并在适当的时间内降解。因此,正在考虑传统绝缘系统的替代解决方案以增加变压器的坚定性。基于天然酯的绝缘油(NeoS)作为可生物降解的诸如可生物降解并且具有更高的闪点和击穿电压时提供良好的替代品。此外,随着纳米颗粒(NPS)的添加,进一步增强了NEO的性质。本文提供了基于天然酯基绝缘油(Neo)及其纳米流体(Neo-NFS)的一些介电参数的对比研究。具有合适重量百分比的半导体氧化钛(TiOZ)NPS分散在基础流体中以制备NFS。对于油样的条件评估,它们在开放式烧杯氧化衰老(OboA)装置中为500小时,以获得老化的绝缘液体。这将有助于评估衰老后持续时间后油的健康状况。在石油样品 - Neo,Neo-NF,年龄和老年Ne-NF中进行了相关研究。观察到,在老化过程之前和之后,Neo-NFS在其所有性质方面比基础流体更好。从实验中观察到具有半导体TiOz NP的Neo-NF在介电性质中显示出显着的改善。

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