首页> 外文会议>第九届电介质材料性能与应用国际会议(The 9th International Conference on Properties and Applications of Dielectric Materials)论文集 >Unique relationship between interfacial tension test (IFT) and neutral number test (Acidity) of transformer insulation oil in PLN P3B JB-Jakarta and Banten Regional
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Unique relationship between interfacial tension test (IFT) and neutral number test (Acidity) of transformer insulation oil in PLN P3B JB-Jakarta and Banten Regional

机译:PLN P3B JB-雅加达和万丹地区变压器绝缘油的界面张力测试(IFT)和中性值测试(酸度)之间的独特关系

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Transformers are one of some important equipment on electricity network. Each utility, in this case PLN P3B Jawa-Bali, has to assure their reliability in order to maintain electrical power system stability by assessing transformer conditions. Insulation system, which consists of liquid and solid insulation, is the most important part of transformer system. The performance of transformer will depend on its insulation system. Solid insulation has a function to provide mechanical strength, dielectric strength and dielectric spacing. Liquid insulation has a function to provide dielectric strength, cooling and protect the active material. To assess the quality of liquid insulation in this term is insulation oil there are several test that can be done i.e. water content, breakdown voltage, acidity, interfacial test, sediment, flash point and color. These tests will give information whether the insulation is in normal ageing condition or in accelerating ageing condition due to oxidation. This paper will explain the typical of Interfacial tension test (IFT), neutral number test (acidity) during degradation process due to oxidation in PLN P3B JB – Jakarta and Banten regional and the unique relationship between interfacial tension test and neutral number test (acidity) itself. The data shown that an increasing of neutral number (acidity) value always followed by a characteristic drop in IFT. Our analysis that we’ve done refer to oil quality test in PLN P3B JB Jakarta & Banten regional at 2008 which consist of 250 transformers.
机译:变压器是电网上的一些重要设备之一。每个公用事业公司(在本例中为PLN P3B Jawa-Bali)都必须确保其可靠性,以便通过评估变压器条件来保持电力系统的稳定性。绝缘系统由液体和固体绝缘组成,是变压器系统中最重要的部分。变压器的性能将取决于其绝缘系统。固体绝缘具有提供机械强度,介电强度和介电间隔的功能。液体绝缘具有提供介电强度,冷却和保护活性材料的功能。为了评估绝缘油这一术语的液体绝缘质量,可以进行几项测试,即含水量,击穿电压,酸度,界面测试,沉积物,闪点和颜色。这些测试将提供有关绝缘材料处于正常老化状态还是由于氧化而加速老化的信息。本文将解释PLN P3B JB –雅加达和万丹地区因氧化而在降解过程中的界面张力测试(IFT),中性数测试(酸度)的典型特征,以及界面张力测试和中性数测试(酸度)之间的独特关系本身。数据表明,中性值(酸度)值的增加总是伴随着IFT的特征性下降。我们所做的分析是指2008年在PLN P3B JB雅加达和万丹地区进行的油质测试,其中包括250台变压器。

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