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首页> 外文期刊>Transactions on Electrical and Electronic Materials >Numerical Modeling of Charge Transport in Polymer Materials Under DC Continuous Electrical Stress
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Numerical Modeling of Charge Transport in Polymer Materials Under DC Continuous Electrical Stress

机译:直流连续电应力作用下高分子材料中电荷输运的数值模拟

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摘要

Our work is based on the development of a numerical model to develop a methodology for predicting the aging and breakdown in insulation due to the dynamics of space charge packets. The model of bipolar charge transports is proposed to simulate space charge dynamic for high DC voltage in law-density polyethylene (LDPE), taking into account the trapping and detrapping of recombination phenomena, this model has been developed and experimentally validation. Theoretical formulation of the physical problem is based on the Poisson, the continuity and the transport equations as well as on the appropriate models for injection. Numerical results provide temporal and local distributions of the electric field, the space charge density for the different kinds of charges, conduction and displacement current densities, and the external current.
机译:我们的工作基于数值模型的开发,以开发一种方法来预测由于空间电荷包的动态而引起的绝缘老化和击穿。提出了一种双极性电荷传输模型,以模拟法密度聚乙烯(LDPE)中高直流电压的空间电荷动态,并考虑了复合现象的俘获和去俘获,对该模型进行了开发和实验验证。物理问题的理论表述基于泊松,连续性和输运方程式以及适当的注射模型。数值结果提供了电场的时间和局部分布,不同类型电荷的空间电荷密度,传导和位移电流密度以及外部电流。

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