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Modeling the impact of high thermal conductivity paper on the performance and life of power transformers

作者:Serhat Bilyaz, A. K. Bhati, Mark Hamalian, Karey Maynor, Tejaswi Soori, Angelo L. Gattozzi, C. M. Penney, D.A. Weeks, Yue Xu, Liangbing Hu, Jing Zhu, J.K. Nelson, Robert Hebner, Vaibhav Bahadur · 发表于:Heliyon · 年份:2024 · DOI:10.1016/j.heliyon.2024.e27783 · 被引用次数:8 · 研究领域:Power Transformer Diagnostics and Insulation、High voltage insulation and dielectric phenomena、Magnetic Properties and Applications

Degradation of insulation paper is a key contributor to the failure of power transformers. Insulation degradation accelerates at elevated temperatures, which highlights the potential for better thermal management to prolong life. While several studies have analyzed the benefits of high thermal conductivity oil for reducing temperatures inside a transformer, this study is an initial assessment of the benefits of high thermal conductivity paper on transformer life. Blending particulates with cellulosic fibers offers a pathway for high thermal conductivity paper (with good dielectric properties), which can reduce internal temperatures. Presently, life extensions that can be achieved by the use of such thermally conducting papers were estimated, with the thermal conductivity of the paper being the key parameter under study. The analytical-numerical thermal model used in this study was validated against experimental measurements in a distribution transformer, adding confidence to the utility of the model. This model was then used to provide estimates of hot-spot temperature reduction resulting from the use of papers with higher thermal conductivity than baseline. Transformer life was predicted conventionally by tracking the degree of polymerization of paper over time, based on an Arrhenius model. Results indicate that increasing the thermal conductivity of paper from 0.2 W/mK (baseline) to 1 W/mK reduces the hot spot temperature by 10 °C. While degradation significantly depends on...