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Modeling porous structure of oil-pressboard interface and its effect on electric field distribution

机译:油压板界面的多孔结构建模及其对电场分布的影响

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摘要

The oil−pressboard insulation is a typical composite insulation system widely used in the design and manufactory of large power apparatus. The implement of oil−pressboard insulation may lead to surface electrification and discharge at the interface under certain condition. It is of significant importance to take an insight into the phenomenon occurring at the interface. Through experiment, the pressboard is found as a porous material. The interface changes abruptly from bulk pressboard to the bulk oil as a result of the porous structure. A new model is proposed which divides the interface into bulk oil region, transition region, and bulk pressboard region. The width of the transition region is decided according to the microtome figure. The effective permittivity of the transition region is calculated using a new model based on fractal theory. The model is validated and compared with previous calculation model. The effect of the existence of transition region on the electric field distribution is discussed.
机译:压油板绝缘是一种典型的复合绝缘系统,广泛用于大型电力设备的设计和制造中。压油板绝缘的工具在一定条件下可能会导致表面起电并在界面处放电。深入了解界面处发生的现象非常重要。通过实验,发现压纸板为多孔材料。由于多孔结构,界面从散装纸板突然变为散装油。提出了一种新的模型,该模型将界面分为散装油区域,过渡区域和散装纸板区域。过渡区域的宽度根据切片机图确定。使用基于分形理论的新模型来计算过渡区域的有效介电常数。该模型经过验证,并与先前的计算模型进行了比较。讨论了过渡区的存在对电场分布的影响。

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