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Space and Interface Charge Simulation of Oil-Paper Insulation with Multi-Layer Oil Gap and Insulation Pressboard

机译:多层油隙和绝缘压板对油纸绝缘的空间和界面电荷模拟

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The accumulation of space charge inside and at the interface of oil-paper insulation could distort the electric field and cause energetic degradation. So far, two types of model are commonly used to describe space charge movement, which is unipolar charge transport model and bipolar charge transport model. In this paper, the authors presented a way to simulate the space charge movement of oil-paper insulation consists of multi-layer of oil gap and oil impregnated pressboard based on the bipolar charge transport model using upstream finite element method (FEM). The space charge movement simulation result of two layer “oil gap + oil impregnated pressboard” highly matches with the experimental result. With the simulation method been validated by the experimental, the following three layer “oil impregnated pressboard + oil gap + oil impregnated pressboard” and four layers “oil gap + oil impregnated pressboard + oil gap + oil impregnated pressboard” space charge movement simulations were performed. Based on the simulation results, a new model for determining the polarity at the interfaces between oil gaps and oil impregnated pressboard was concluded.
机译:油纸绝缘体内部和界面处的空间电荷积累会扭曲电场,并导致能量衰减。到目前为止,通常使用两种类型的模型来描述空间电荷运动,即单极电荷传输模型和双极电荷传输模型。在本文中,作者基于上游有限元方法(FEM),基于双极电荷传输模型,提出了一种模拟油纸绝缘层的空间电荷运动的方法,该绝缘层由多层油隙和浸油的压制板组成。两层“油隙+浸油压制板”的空间电荷运动模拟结果与实验结果高度吻合。实验验证了仿真方法的正确性,进行了以下三层“浸油压板+油隙+浸油压板”和四层“油浸+油浸压板+油隙+浸油压板”的空间电荷运动模拟。 。根据仿真结果,建立了确定油隙与浸油压板之间界面极性的新模型。

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