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A new proposed moisture diffusion coefficient for transformer paper

机译:提出了一种新的变压器纸水分扩散系数

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In a previous work, a moisture diffusion coefficient for non-impregnated transformer insulation paper was proposed, which is useful for analysing the moisture dynamics in electrical power transformer insulation during its construction stage. This diffusion coefficient was determined using a set of experimental drying curves obtained in a thermogravimetric analyzer and an optimization process that employs genetic algorithms. The expression for the moisture diffusion coefficient proposed in that previous work is dependent on the temperature, insulation thickness and average moisture concentration. The use of average moisture concentration is not common in diffusion models. In this paper, a new expression for the moisture diffusion coefficient is proposed in which the dependence on average moisture has been substituted by a dependence on the local concentration. This new expression was obtained that is more suitable for diffusion models. To obtain that expression, the same experimental data used in the previous study have been used, but the genetic algorithm's optimization process was modified. In this paper, a description of the applied procedure is detailed, and the new proposed expression is presented. Finally, a comparison between both equations, the one dependent on average moisture and the one dependent on the local moisture, is performed using a drying diffusion model implemented in a finite element commercial software package.
机译:在先前的工作中,提出了非浸渍变压器绝缘纸的水分扩散系数,这对于分析电力变压器绝缘在其建造阶段的水分动力学很有用。使用在热重分析仪中获得的一组实验干燥曲线和采用遗传算法的优化过程来确定该扩散系数。在先前的工作中提出的水分扩散系数的表达式取决于温度,绝缘厚度和平均水分浓度。平均水分浓度在扩散模型中并不常见。在本文中,提出了一种新的水分扩散系数表达式,其中对平均水分的依赖性已由对局部浓度的依赖性代替。获得的新表达式更适合于扩散模型。为了获得该表达式,使用了先前研究中使用的相同实验数据,但是修改了遗传算法的优化过程。在本文中,详细描述了所应用的过程,并提出了新的提议表达式。最后,使用在有限元商业软件包中实现的干燥扩散模型进行两个方程之间的比较,一个方程依赖于平均湿度,另一个方程依赖于局部湿度。

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