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Statistical Analysis on AC Breakdown Voltage of CNT Nanofluid with Mineral Oil and Palm Oil

机译:矿物油和棕榈油对碳纳米管交流击穿电压的统计分析

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Nanofluids can be regarded as next-generation heat transfer fluid that has enormous potential to enhance the performance of insulating oil in the transformer. In this study, the breakdown voltage of new colloidal mineral insulation oil and natural ester oil (palm oil) was systematically investigated and compared. Carbon nanotubes (CNT) nanofluid is formulated by dispersing CNTs in mineral and palm oil. The AC breakdown voltage test is performed accordingly to the methods and precautionary steps based on IEC 60156. For a successful forecast, instead of referring to the average and lowest possible breakdown failure data, there are few types of distributions (Weibull, normal, Gumbel and generalized extreme value (GEV)) that were used in order to represent a better probability of breakdown failure. In most cases, the experimental results followed Weibull and GEV distributions than other distributions. Thus, Weibull and GEV distributions were used to indicate the probability of breakdown failure of CNT nanofluids. The results indicated that CNT is considered as a potential material that would be possible to enhance the performance of mineral oil but with appropriate concentrations of CNTs. However, contradictory results occurred for CNT based palm oil, where the trend of breakdown voltage is lower than mineral oil value.
机译:纳米流体可被视为下一代传热流体,具有极大的潜力来增强变压器中绝缘油的性能。在这项研究中,系统地研究和比较了新型胶体矿物绝缘油和天然酯油(棕榈油)的击穿电压。碳纳米管(CNT)纳米流体是通过将CNT分散在矿物油和棕榈油中制成的。交流击穿电压测试根据IEC 60156的方法和预防步骤进行。为了成功进行预测,与其参考平均和最低可能的击穿失败数据,还很少有分布类型(Weibull,正态分布,Gumbel和通用极值(GEV)),用于表示更好的击穿失败概率。在大多数情况下,实验结果遵循的是Weibull和GEV分布,而不是其他分布。因此,Weibull和GEV分布用于指示CNT纳米流体击穿失败的可能性。结果表明,碳纳米管被认为是潜在的材料,可以通过适当浓度的碳纳米管来增强矿物油的性能。然而,基于CNT的棕榈油发生了矛盾的结果,其中击穿电压的趋势低于矿物油的值。

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