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首页> 外文期刊>Physica, B. Condensed Matter >Molecular dynamics study of water molecule diffusion in oilpaper insulation materials
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Molecular dynamics study of water molecule diffusion in oilpaper insulation materials

机译:水分子在油纸绝缘材料中扩散的分子动力学研究

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摘要

Moisture is an important factor that influences the safe operation of transformers. In this study, molecular dynamics was employed to investigate the diffusion behavior of water molecules in the oilpaper insulation materials of transformers. Two oilcellulose models were built. In the first model, water molecules were initially distributed in oil, and in the second model, water molecules were distributed in cellulose. The non-bonding energies of interaction between water molecules and oil, and between water molecules and cellulose, were calculated by the Dreiding force field. The interaction energy was found to play a dominant role in influencing the equilibrium distribution of water molecules. The radial direction functions of water molecules toward oil and cellulose indicate that the hydrogen bonds between water molecules and cellulose are sufficiently strong to withstand the operating temperature of the transformer. Mean-square displacement analysis of water molecules diffusion suggests that water molecules initially distributed in oil showed anisotropic diffusion; they tended to diffuse toward cellulose. Water molecules initially distributed in cellulose diffused isotropically. This study provides a theoretical contribution for improvements in online monitoring of water in transformers, and for subsequent research on new insulation materials. All rights reserved.
机译:水分是影响变压器安全运行的重要因素。在这项研究中,分子动力学被用来研究水分子在变压器油纸绝缘材料中的扩散行为。建立了两个油纤维素模型。在第一个模型中,水分子最初分布在油中,而在第二个模型中,水分子分布在纤维素中。通过Dreiding力场计算了水分子与油之间以及水分子与纤维素之间的相互作用的非结合能。发现相互作用能在影响水分子的平衡分布中起主要作用。水分子对油和纤维素的径向功能表明,水分子和纤维素之间的氢键足够牢固,可以承受变压器的工作温度。水分子扩散的均方位移分析表明,最初分布在油中的水分子表现出各向异性扩散。它们倾向于向纤维素扩散。最初分布在纤维素中的水分子各向同性扩散。这项研究为改进变压器水的在线监测以及随后对新型绝缘材料的研究提供了理论上的帮助。版权所有。

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