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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >3D MHD modelling of low currenthigh voltage dc plasma torch under restrike mode
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3D MHD modelling of low currenthigh voltage dc plasma torch under restrike mode

机译:在重击模式下低电流高压直流等离子炬的3D MHD建模

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We present in this paper a magnetohydrodynamic (MHD) modelling of the gliding arc behaviour of a dc plasma torch operating with air under low current and high voltage conditions. The low current leads to instabilities and difficulties with simulating the process because the magnetic field is not sufficient to constrict the arc. The model is 3D, time dependent and the MHD equations are solved using CFD software Code-Saturne. Although the arc is definitively non-local thermodynamic equilibrium (LTE), the LTE assumption is considered as a first approach. The injection of air is tangential. A hot gas channel reattachment model has been used to simulate the restriking process of the arc root. After the description of the model, the most appropriate electrical voltage breakdown parameter has been selected in comparing with experimental results. A typical operating point is then studied in detail and shows the helical shape of the arc discharge in the nozzle. Finally, the mass flow rate and the current have been varied in the range 0.160.5gs ~1 and 100300mA, respectively, corresponding to typical glidarc operating points of our experimental plasma torch. The model shows good consistency with experimental data in terms of global behaviour, arc length, mean voltage and glidarc frequency.
机译:我们在本文中介绍了在空气在低电流和高电压条件下运行的直流等离子炬的滑弧行为的磁流体动力学(MHD)模型。低电流导致模拟过程的不稳定和困难,因为磁场不足以限制电弧。该模型为3D模型,与时间相关,并且使用CFD软件Code-Saturne求解MHD方程。尽管电弧绝对是非局部热力学平衡(LTE),但将LTE假设视为第一种方法。空气的注入是切向的。热气通道重新连接模型已用于模拟电弧根的再起弧过程。在描述了模型之后,与实验结果进行比较,选择了最合适的电压击穿参数。然后详细研究了典型的工作点,并显示了喷嘴中电弧放电的螺旋形状。最后,质量流率和电流分别在0.160.5gs〜1和100300mA范围内变化,与我们的实验等离子炬的典型glidarc工作点相对应。该模型在整体性能,电弧长度,平均电压和滑行频率方面显示出与实验数据的良好一致性。

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