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Study of microscopic electric field on contact surface in vacuum interrupters based on fractal theory

机译:基于分形理论的真空灭弧室接触面微观电场研究

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The objective of this paper is to study the microscopic electric field on contact surface in vacuum interrupters based on fractal theory, with considering the contact surface roughness. Firstly, the fractal theory is introduced into the application of vacuum breakdown studies. The micro-protrusion on the contact surface is modelled based on the W-M fractal function, with the different contact surface roughness 1.6 um and 3.2 um. Then, the electric field distribution in the contact gap is simulated. With considering the amount of calculation time and the accuracy of calculation, multi-zone mesh generation is used to improve the accuracy of the simulation. The results can provide some useful information to study vacuum breakdown phenomena.
机译:本文的目的是基于分形理论研究真空灭弧室接触表面的微观电场,同时考虑接触表面的粗糙度。首先,将分形理论引入真空击穿研究中。基于W-M分形函数对接触表面上的微凸起进行建模,不同的接触表面粗糙度为1.6 um和3.2 um。然后,模拟接触间隙中的电场分布。在考虑计算时间和计算精度的情况下,使用多区域网格生成来提高仿真的精度。研究结果可为研究真空击穿现象提供一些有用的信息。

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