首页> 外文会议>Proceedings of 2008 International Conference on Condition Monitoring and Diagnosis(CMD 2008) pt.1 >Verification of a model-based diagnosis system for on-line detection of the moisture content of power transformer insulations using finite element calculations
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Verification of a model-based diagnosis system for on-line detection of the moisture content of power transformer insulations using finite element calculations

机译:验证基于模型的诊断系统,用于使用有限元计算在线检测电力变压器绝缘层的水分含量

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It is a well known fact that the moisture content of a power transformer insulation system is a key parameter for the estimation of its aging condition and operation reliability. Therefore, detection of the moisture content is a very essential task within power transformer diagnostics. While conventional methods for estimation of the water content of the insulation system require a transformer shutdown of several hours, the proposed method calculates the profiles of water concentration in the cellulosic part of the insulation system, as well as the concentration of water in transformer oil from operational parameters. An one-dimensional model for the moisture diffusion in paper estimates the temperature dependent moisture distributions in the paper. It includes temperature dependent diffusion coefficients and acts as a non-linear control loop for the water concentration in transformer oil. Beside experimental work, two-dimensional finite element (FE) calculations of the temperature dependent water concentration distribution in the transformer insulation system have been performed for model verification. The calculations are based on an opensource Whitney-Element solver. The computed results show the validity of the diffusion model and give important guidelines for the required complexity of thermal models.
机译:众所周知,电力变压器绝缘系统的水分含量是评估其老化条件和运行可靠性的关键参数。因此,水分含量的检测是电力变压器诊断中非常重要的任务。尽管估算绝缘系统水含量的常规方法需要关闭变压器几个小时,但所提出的方法可计算绝缘系统纤维素部分中水的浓度分布以及变压器油中水的浓度。操作参数。纸张中水分扩散的一维模型可估计纸张中与温度相关的水分分布。它包括与温度有关的扩散系数,并作为变压器油中水浓度的非线性控制回路。除实验工作外,还对变压器绝缘系统中温度相关的水浓度分布进行了二维有限元(FE)计算,以进行模型验证。这些计算基于开源的Whitney-Element解算器。计算结果表明了扩散模型的有效性,并为所需的热模型复杂性提供了重要指导。

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