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Synthetic ester oil based high permittivity CaCu3Ti4O12 (CCTO) nanofluids an alternative insulating medium for power transformer

机译:合成酯油基高介电常数CaCu 3 Ti 4 O 12 (CCTO)纳米流体是电力变压器的替代绝缘介质

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摘要

Green insulating oils are the present industry need for an alternative insulation to mineral oil due to its higher bio-degradability. Synthetic ester oil plays a prominent role by compromising all the critical parameters for better adaptability to power transformers. Presently, high dielectric nano-additive based enhancement studies have been targeted for the development of newer insulation with improved dielectric withstand levels. The present work deals with synthetic ester oil based high dielectric permittivity CCTO (CaCu3Ti4O12) nanofluids. The dielectric, physical and chemical properties are examined according to the applicable IEC and ASTM standards. The breakdown voltage enhancements found for AC (41.6%) and lightning impulse (17.3%) has been observed. Also, a decrement in loss tangent and increment in dielectric permittivity has been observed. An increment in volume fraction loading results in an increment in partial discharge inception voltage, thermal conductivity and flash point properties. Hence, based on overall enhancement performance, <0.01% CCTO is considered as the optimum addition to synthetic ester oil which is considered as an alternative medium as well as next generation fluid for power transformers.
机译:由于绿色绝缘油具有更高的生物降解性,因此目前行业需要矿物油替代绝缘材料。合成酯油通过损害所有关键参数以更好地适应电力变压器而发挥着重要作用。目前,基于高电介质纳米添加剂的增强研究已针对开发具有改善的电介质耐受水平的新型绝缘材料。本工作涉及基于合成酯油的高介电常数CCTO(CaCu3Ti4O12)纳米流体。根据适用的IEC和ASTM标准检查介电,物理和化学性质。观察到交流(41.6%)和雷电冲击(17.3%)的击穿电压增强。另外,已经观察到损耗角正切的减小和介电常数的增大。体积分数负荷的增加导致局部放电起始电压,热导率和闪点特性的增加。因此,基于总体增强性能,<0.01%CCTO被认为是合成酯油的最佳添加物,后者被认为是电力变压器的替代介质以及下一代流体。

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