利用功能化纳米金刚石增强变压器油自然对流换热

V. Prabhu, Ethan Languri, J. Davidson, D. Kerns, L. Costa, Glenn Wilson
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引用次数: 0

摘要

有效的变压器冷却是提高变压器使用寿命和降低相关维护成本的重要因素。据报道,铁心温度每降低1℃,变压器的寿命就增加10%。变压器油是一种典型的矿物油,通常用于变压器的冷却,其固有的缺点是导热系数低。这限制了从变压器核心到周围环境的热量传递。本研究探讨了在变压器油中加入功能化纳米金刚石(fND)颗粒来改善变压器油的导热性。在这项研究中,通过在变压器油中使用两种不同浓度(0.2 wt.%和0.4 wt.%)的fND,并与基础变压器油进行比较,研究了自然对流换热的增强。在实验的几何中,考虑了一个四面绝缘、一面加热的高容器。对容器内的自然对流进行了观测,实验结果与理论模型相吻合。0.2 wt.%样品的传热系数提高了41.7%,0.4 wt.%样品的传热系数提高了82.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural Convection Heat Transfer Enhancement using Functionalized Nanodiamonds in Transformer Oil
Efficient transformer cooling is an important factor in increasing the lifetime of transformer and reducing the associated maintenance costs. It has been reported that the lifetime of the transformer is increased by 10% with 1 °C decrease in the core temperature. The transformer oil which is a typically a mineral oil, used commonly in cooling of transformers has an inherent disadvantage of low thermal conductivity. This limits the amount of heat transfer from the core of the transformer to the surroundings. This research discusses the improvement of thermal conductivity of transformer oil by using functionalized nanodiamond (fND) particles in transformer oil. In this study, enhancement in natural convection heat transfer is studied by using two different concentrations (0.2 wt.% and 0.4 wt.%) of fND in transformer oil and compared with the base transformer oil. A tall container insulated from all sides and heated from one side is considered for the experiment's geometry. The natural convection is observed in the container and the experimental results are validated with the theoretical model. The observed enhancement in heat transfer coefficient for 0.2 wt.% sample was 41.7% and for 0.4 wt.% sample was 82.5%.
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