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Aging of transformer insulation of experimental transformers and laboratory models with different moisture contents: Part II — moisture distribution and aging kinetics

机译:不同水分含量的实验变压器和实验室模型变压器绝缘老化:第二部分 - 水分分布和老化动力学

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Part II of the paper presents the results of the experimental data processing presented in Part I dedicated to distribution of water content in the standard Kraft paper along the height of HV windings during aging of experimental transformers and comparisons of paper aging rates of experimental transformers and laboratory models. The dependence of aging constant (pre-exponential factor of Arrhenius equation) on the moisture content of cellulose insulation is introduced. The developed functional dependence is obtained by detailed processing of the data - hot-spot temperature, moisture and degree of polymerization of cellulose insulation during 460 days of aging experiment of two transformers on load, with conductor insulation moisture of ca. 1 % and ca. 4 % and 300 days of aging experiment on corresponding laboratory models. Based on the results shown in this paper, aging curve, i.e. change of degree of polymerization during transformer operation insulated with Kraft paper and inhibited mineral oil was proposed, including varying water contents during aging. Using this equation it is possible to evaluate aging rate of solid insulation, starting from known hot-spot temperature and moisture content in cellulose insulation. Good comparison of aging curves of experimental transformers and laboratory models, i.e. measured and calculated values of degree of polymerization of paper to existing literature findings was obtained.
机译:本文的第II部分介绍了在实验变压器老化期间沿着HV绕组的高度致力于标准牛皮纸中含水量分布的实验数据处理的结果,以及实验变压器和实验室的纸张老化率的纸张老化速率的比较楷模。引入了衰老常数(Arhenius方程的预指数因子)对纤维素绝缘的水分含量的依赖性。通过详细加工纤维素绝缘在载荷的两次变压器老化实验的460天内的数据 - 热点温度,纤维素绝缘层的详细处理,获得了发育的功能依赖性。 1%和CA.在相应的实验室模型上的老化实验4%和300天。提出了基于本文所示的结果,提出了老化曲线,即,用牛皮纸和抑制矿物油的变压器操作期间聚合程度的变化,包括变化在老化过程中的水含量。使用这种等式可以评估固体绝缘的老化率,从已知的热点温度和纤维素绝缘中的水分含量开始。获得了实验变压器和实验室模型的老化曲线的良好比较,即测量和计算对现有文献结果的纸张聚合程度的值。

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