论文标题
在不同的电压应力下,在空气中实施了阴极的定向流媒体模型
Implementation of a cathode directed streamer model in Air under different voltage stresses
论文作者
论文摘要
为了找到具有不断增长的气候变化法规的SF6的可行替代方案,应正确评估诸如压缩空气之类的替代方案。对于中型电压应用,应承受电压用作尺寸标准,这取决于流媒体的启动和传播,这是电气故障的前体。为了设计优化,在不同的应力,压力等下,对这种电气放电的起始和传播机制的透彻理解也应通过预测模型在实验和数值上进行研究。到目前为止,大多数数值研究都是通过自制代码进行的,因为流媒体模型在商业软件中不易获得,因为此类计算的复杂性和非线性性。最近,随着商业有限元软件Comsol(TM)多物理学的等离子体模块的鲁棒性增加,可以以合理的准确性开发流媒体放电模型。在本文中,提出了一种实施和验证方法,用于用于空气中的流媒体进化,以解决不同的电压应力。在标准温度和压力条件下(STP)条件下的短间隙($ 5毫米)的模拟结果已进行了分析,并与某些经典论文进行了比较,以评估这种模型对于进一步研究非热电气放电的适用性。指数项中的电压,流媒体放电,环保气体,数值模型。
To find a viable alternative to SF6 with growing climate change regulations, proper evaluation of alternatives such as compressed air ought to be done. For medium voltage applications, the withstand voltage is used as the dimensioning criteria and this is dependent on the initiation and propagation of streamers which are precursors to electrical breakdown. For design optimization, a thorough understanding of the initiation and propagation mechanisms of such electrical discharges under different stresses, pressure etc. ought to be studied experimentally and numerically also via a predictive model. Most of the numerical studies have so far been done via homemade codes as streamer models are not readily available in commercial software because of the complexity and non-linearity of such computations. Recently, with the increased robustness of the plasma module of the commercial finite element software, COMSOL(tm) Multiphysics, streamer discharge models can be developed with reasonable accuracy. In this paper, an implementation and validation approach is presented for streamer evolution in air for different voltage stresses. Results of simulations for short gaps ($\le$ 5 mm) under Standard Temperature and Pressure (STP) conditions have been presented, analyzed and compared with some classical papers to evaluate the suitability of such a model for further studies of non-thermal electrical discharges. Index Terms-medium voltage, streamer discharges, eco-friendly gas, numerical models.