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Partial discharge behavior within a spherical cavity in a solid dielectric material as a function of frequency and amplitude of the applied voltage

机译:固体介电材料中球形空腔内的局部放电行为与施加电压的频率和幅度的函数

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摘要

Modeling of the partial discharge (PD) process allows a better understanding of the phenomena. In this paper, a simulation model for spherical cavities within a homogeneous dielectric material has been developed. The model is implemented using Finite Element Analysis (FEA) software in parallel with a mathematical package. This method provides many advantages over previous PD models because discharge events can be simulated dynamically and the electric field in the cavity can be calculated numerically. The model has been used to study the effect of different amplitudes and frequencies of the applied voltage and simulation results have been compared with experimental measurement results. It is found that certain model parameters are dependent on the applied stress and parameters that clearly affect PD activity can be readily identified, these parameters include; the electron detrapping time constant, the cavity surface conductivity, the initial electron generation rate and the extinction voltage. The influence of surface charge decay through conduction along the cavity wall on PD activity has also been studied.
机译:对局部放电(PD)过程进行建模可以更好地理解现象。在本文中,已开发出均质电介质材料中球形腔的仿真模型。该模型是使用有限元分析(FEA)软件与数学软件包并行实现的。与放电放电模型相比,该方法具有许多优势,因为可以动态模拟放电事件,并且可以通过数值计算腔中的电场。该模型已用于研究施加电压的不同幅度和频率的影响,并将模拟结果与实验测量结果进行了比较。发现某些模型参数取决于所施加的应力,并且可以容易地识别出明显影响PD活动的参数,这些参数包括:电子俘获时间常数,腔体表面电导率,初始电子产生速率和消光电压。还研究了通过沿腔壁的传导引起的表面电荷衰减对PD活性的影响。

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