FTIR and FDS assessment of mineral oil under low electrical discharge

Q3 Engineering Diagnostyka Pub Date : 2022-05-12 DOI:10.29354/diag/149994
B. Saliha, Benabed Fadila, Fofana Issouf, Mokhnache Leila
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Abstract

Transformers are crucial elements in the transmission and distribution of electrical energy. The importance of diagnosing these equipments are two-fold: (1) the necessity of service reliability and (2) the likelihood to avoid economic and environmental concerns. Under service conditions, the electrical and thermal stresses or chemical contaminants may degrade the insulation oil inside the transformer and cause incipient failures or reduce its service life. Partial discharges well recognized to be among the most common stresses that can lead to slow but steady degradation of insulating oil in transformers. The present work aims at understanding the influence of low energy electrical discharge on mineral oil based on two spectroscopic methods: FTIR spectroscopy and Frequency Domain Spectroscopy (FDS). An electrical fault has been created by continuous discharge of 10 kV on the surface of various oil samples according to the ASTM D6180. From the FDS results, it was found that the amount of charge carriers and moisture increased with the aging time elapsed that influences the conduction phenomena and in turn, increases the dissipation factor. These results are confirmed by the FTIR results, which show that the intensity of the peak absorbance of the C–H and C-C functional group decreased with aging. The application of these two methods may help monitoring the condition of oil. A combined FTIR and FDS measurements highlighted the correlations between modifications in electrical properties and changes in the chemical structure of the oil under electrical accelerated ageing.
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低放电条件下矿物油的FTIR和FDS评价
变压器是电能传输和分配的关键部件。诊断这些设备的重要性有两个方面:(1)服务可靠性的必要性;(2)避免经济和环境问题的可能性。在使用条件下,电气和热应力或化学污染物可能会使变压器内部的绝缘油降解,导致早期故障或缩短其使用寿命。局部放电是公认的最常见的应力之一,可导致变压器绝缘油缓慢而稳定地降解。本文利用FTIR光谱和频域光谱两种光谱方法研究了低能量放电对矿物油的影响。根据ASTM D6180,通过在各种油样表面连续放电10kv产生电气故障。FDS结果表明,随着老化时间的延长,载流子和水分的数量增加,影响了导电现象,从而增加了耗散系数。FTIR结果证实了这一结果,C-H和C-C官能团的吸光度峰值强度随着老化而减弱。这两种方法的应用有助于监测油的状态。FTIR和FDS的综合测量结果显示,在电加速老化过程中,油的电性能变化与化学结构变化之间存在相关性。
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来源期刊
Diagnostyka
Diagnostyka Engineering-Mechanical Engineering
CiteScore
2.20
自引率
0.00%
发文量
41
期刊介绍: Diagnostyka – is a quarterly published by the Polish Society of Technical Diagnostics (PSTD). The journal “Diagnostyka” was established by the decision of the Presidium of Main Board of the Polish Society of Technical Diagnostics on August, 21st 2000 and replaced published since 1990 reference book of the PSTD named “Diagnosta”. In the years 2000-2003 there were issued annually two numbers of the journal, since 2004 “Diagnostyka” is issued as a quarterly. Research areas covered include: -theory of the technical diagnostics, -experimental diagnostic research of processes, objects and systems, -analytical, symptom and simulation models of technical objects, -algorithms, methods and devices for diagnosing, prognosis and genesis of condition of technical objects, -methods for detection, localization and identification of damages of technical objects, -artificial intelligence in diagnostics, neural nets, fuzzy systems, genetic algorithms, expert systems, -application of technical diagnostics, -diagnostic issues in mechanical and civil engineering, -medical and biological diagnostics with signal processing application, -structural health monitoring, -machines, -noise and vibration, -analysis of technical and civil systems.
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