Investigation of AC breakdown strength and frequency varied dielectric response of the non-conventional vegetable oil

Mrutyunjay Maharana, Niharika Baruah, S. K. Nayak, N. Sahoo, M. Chakrobarty
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Abstract

Vegetable oil (VO) based liquid dielectric are gradually being implemented to improve the heat transfer in electrical appliances to enhance their life and improve efficiency. The conventional VO based insulating oil is being moderately researched to improve the understanding of the physical mechanisms involved in their enhanced performance compared to the existing mineral oil (MO) based transformer oil (TO). Despite of all the superior thermophysical and electrical performance of the conventional VO reported in few studies in the context of TO, its vast consumption as edible purpose may limit its application as liquid insulation. Therefore, in this study, a non-conventional VO such as pongamia oil methyl ester (POME) is chosen to be a liquid insulation for transformer. In this paper, the investigation is carried out to evaluate the AC breakdown voltage (ACBDV) of the POME and also the dielectric responses of POME at varying frequency is analyzed at transient condition. POME is extracted from the pongamia crude oil by two step transesterification process followed by refined bleached and deodorization. To understand the comparative enhancement in dielectric integrity, ACBDV analysis of MO and POME is carried out at a line frequency of 50 Hz as per ASTM 1816. The dielectric response such as AC resistivity and relative permittivity of the POME is studied from 50 Hz to 10 MHz. It is observed from the study that the mean BDV of the POME is superior than the MO. Moreover, to detect the probability of failure in ACBDV at different percentage such as 5, 10, 50 and 63.2%, Weibull statistical analysis of the ACBDV is carried for POME and MO. With the rise of frequency from 50 Hz to 10 MHz, the AC resistivity is observed to degrade for both the insulating oils. However, at higher frequency, the resistivity of the POME is not significantly altered and hence making the POME stable in dielectric response at higher frequencies. From the above study, the non-conventional VO and its suitable application in transformer as insulating liquid is a possible option for an efficient insulation.
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非常规植物油交流击穿强度和变频介电响应的研究
植物油(VO)基液体介质正逐渐被应用于改善电器的传热,以提高电器的使用寿命和效率。传统的VO基绝缘油正在进行适度的研究,以提高对其与现有的矿物油(MO)基变压器油(to)相比性能增强的物理机制的理解。尽管在TO的背景下,很少有研究报道传统VO具有优越的热物理和电学性能,但其作为食用用途的巨大消耗可能限制其作为液体绝缘的应用。因此,在本研究中,我们选择了一种非常规的液体绝缘材料,如pomia oil methyl ester (POME)作为变压器的液体绝缘材料。本文对POME的交流击穿电压(ACBDV)进行了研究,并分析了POME在瞬态条件下不同频率下的介电响应。采用两步酯交换、精制漂白、脱臭等工艺从茯苓原油中提取茯苓多糖。为了了解介质完整性的比较增强,根据ASTM 1816,在50 Hz的线频下对MO和POME进行ACBDV分析。研究了POME在50hz ~ 10mhz范围内的交流电阻率和相对介电常数等介电响应。研究发现,POME的平均电阻率优于MO。为了检测ACBDV在5、10、50和63.2%等不同百分比下的失效概率,对POME和MO的ACBDV进行了威布尔统计分析。从50 Hz到10 MHz,随着频率的升高,观察到两种绝缘油的交流电阻率都在下降。然而,在较高的频率下,POME的电阻率没有明显改变,因此使得POME在较高频率下的介电响应稳定。综上所述,非常规液态液体及其在变压器中作为绝缘液的应用是实现高效绝缘的一种可能选择。
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