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Impact of conducting materials on furan-spectral correlation of transformer oil

机译:导电材料对变压器油呋喃光谱相关性的影响

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This paper investigates the impact of conducting materials on the correlation of furan concentration in transformer oil and its spectral response characteristic. The presence of furan derivatives in aged-transformer oil has been one of the key indicators for solid dielectric deterioration. Identification and quantification of furan derivatives are currently performed using high performance liquid chromatography or gas chromatography-mass spectrometry based on ASTM D5837 standard. Although these techniques are well established, they need an expert personal to conduct the test and to analyse its results. Moreover, the test is relatively expensive and the analysis of oil sample may take days as most utilities sending transformer oil samples to external laboratories to be tested. Recently, it has been proven that furan concentration in transformer oil has a strong correlation to the oil spectral response. This paper is to validate this finding and to investigate the impact of conducting materials within transformer oil on this correlation. In this context, extensive experimental tests are conducted to assess the impact of various concentration of conducting materials (e.g., copper dust) dissolved in transformer oil samples of different furan contents on its absorption and transmission spectra. The experimental results show that the impact of dissolved conducting materials on the oil spectral response is minimal and the previously estimated correlation can still be applied.
机译:本文研究了导电材料对呋喃浓度在变压器油中的相关性及其光谱响应特性的影响。在变压器油中的呋喃衍生物的存在是固体介电劣化的关键指标之一。目前使用基于ASTM D5837标准的高效液相色谱或气相色谱 - 质谱法进行呋喃衍生物的鉴定和定量。虽然这些技术已经成熟,但他们需要专家个人进行测试并分析其结果。此外,测试相对昂贵,油样的分析可能需要数天,因为大多数公用事业将变压器油样品发送到要测试的外部实验室。最近,已经证明了变压器油中的呋喃浓度与油光谱反应具有很强的相关性。本文是为了验证该发现,并研究导电材料在变压器油中的影响。在这种情况下,进行了广泛的实验测试,以评估溶解在不同呋喃含量的变压器油样品中的各种浓度的导电材料(例如,铜粉尘)对其吸收和透射光谱的影响。实验结果表明,溶解导电材料对油光谱响应的影响是最小的,并且仍然可以应用先前估计的相关性。

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