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Thermodynamic equilibrium of transformer oil-paper insulation — An experimental study

机译:变压器油纸绝缘的热力学平衡—实验研究

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摘要

Formation of moisture is the main reason that reduces dielectric strength of oil paper insulation in a transformer. Paper insulated copper conductors in a transformer serve as the main source of moisture. Generation of heat in copper conductors initiates cellulosic break down and leads the formation of water in transformer. Moisture reduces the insulation strength mechanically, electrically and chemically. This initiates the growing importance of condition monitoring of oil and paper separately for a power transformer. Oil moisture in a transformer can be experimentally found out from Karl Fischer Titration method, but paper moisture is generally estimated from some well known formula and standard curves. But such estimation may lead to an ambiguous conclusion, because these values are highly depended on their thermodynamic equilibrium. Hence there is a serious need to find out the values of paper moisture independently. This paper provides experimental results of a comparative study between ways of accessing moisture content in oil and paper separately to conclude about the status of insulation in a transformer.
机译:水分的形成是降低变压器中油纸绝缘的介电强度的主要原因。变压器中的纸绝缘铜导体是主要的水分来源。铜导体中产生热量会引发纤维素分解,并导致变压器中水的形成。水分会机械地,电气地和化学地降低绝缘强度。这引发了对电力变压器分别进行油和纸状态监测的重要性的提高。可以通过卡尔·费休滴定法从实验中找到变压器中的油水分,但是通常根据一些众所周知的公式和标准曲线来估算纸的水分。但是这样的估计可能会导致模棱两可的结论,因为这些值高度依赖于它们的热力学平衡。因此,迫切需要独立找出纸张的水分值。本文提供了一个比较研究的实验结果,这些研究结果分别用于获取油和纸中的水分含量,以得出变压器绝缘状态的结论。

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