基于流场仿真分析的低压电弧室结构优化设计

Pengfei Zhang, Guoguang Zhang, Yengsan Geng, Yi Zhang, Jie Wu, Boyu Yang
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引用次数: 1

摘要

在低压开关器件的电弧分裂过程中,电弧腔内的流场起着重要的作用。为了加速电弧淬火,目前最常用的方法之一是通过在电弧室中加入气体材料来增强气体流量。同时,在最近的研究中发现,通过电弧室的优化结构设计来改善流场是另一种有效的方法,特别是在低压开关器件越来越小型化的市场趋势下。本文利用Fluent计算流体力学软件,建立了某型自动转换开关设备电弧室的模型和电弧的磁流体动力学模型。计算了电弧点火过程中电弧腔内流场的分布。在分析流场的基础上,提出了一种最佳电弧室。同时,在相同条件下对前者和最佳弧室进行了实验研究。测量了电弧电流和电弧电压。观察了高速摄像机捕捉到的电弧运动过程和反换相现象。结果表明,优化后的电弧室的中断性能得到明显改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The optimum structural design of low-voltage arc chamber based on simulation and analysis of flow field
In the process of arc splitting in low voltage switching devices, the flow field in arc chamber plays an important role. In order to accelerate the arc quenching, one of the most common methods is to enhance the gas flow through adding gas material in arc chamber currently. Meanwhile, in the recent research, it has been found that improving the flow field through optimum structural design of arc chamber is another effective way, especially in the recent market trend that the low voltage switching devices are getting more and more small size. In this paper, with the CFD software of Fluent, the model of arc chamber which is from a type of auto transfer switch equipment and the magneto-hydrodynamic model of the arc were established. The distribution of the flow field in arc chamber during arc igniting was calculated. On the basis of analyzing the flow field, an optimum arc chamber was proposed. In the meantime, experimental investigations on the former and the optimum arc chambers were carried out under the same conditions. The arc current and arc voltage were measured. The arc motion process and back commutation phenomenon captured with the high-speed camera were observed. The results show that the interruption performance of the optimum arc chamber is improved prominently.
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