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Study on the Heat Flux Density Delivered to the Anode at the Transition to Anode Spot Formation in High Current Vacuum Arcs

机译:高电流真空弧形过渡到阳极点形成的热通量密度的研究

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In vacuum interrupters, anode spot formation is commonly known as a high-current anode discharge mode and it significantly decreases the current interruption capacity of the vacuum interrupters. To understand the mechanism of the anode spot formation, the heat flux density delivered to the anode is of vital importance. The objective of this paper is to determine the peak heat flux density at a transition from diffuse arc mode to anode spot formation in high-current vacuum arcs. A three-dimensional magneto-hydrodynamic model is adopted to describe the high current vacuum arcs. Based on the previous experimental data about the anode spot formation, the simulations quantitatively identified the heat flux density at the transition to anode spot formation. The influence of arc currents, contact gaps, and external AMFs are studied. The arc current is from 12 kA to 25 kA. The contact gaps are 12 mm and 6 mm. The external AMFs are 37 mT and 74 mT. At a given current, the peak heat flux density decreases with an increasing of AMF, and increases with an increasing of contact gap. Over the range of the parameters investigated, the heat flux density at anode spot formation is in a narrow range of 6.1 ×10~8 W/m~2~10.5 ×10~8 W/m~2.
机译:在真空中断器中,阳极点形成通常称为高电流阳极放电模式,并且显着降低了真空中断器的电流中断容量。为了了解阳极点形成的机制,输送到阳极的热通量密度是至关重要的。本文的目的是在高电流真空弧中从漫射电弧模式到阳极点形成的转变时确定峰值热通量密度。采用三维磁力流体动力学模型来描述高电流真空弧。基于先前关于阳极点形成的实验数据,模拟定量地将过渡到阳极点形成的热通量密度。研究了电弧电流,接触间隙和外部AMF的影响。电弧电流为12ka至25 ka。接触间隙为12 mm和6 mm。外部AMF是37吨和74毫秒。在给定电流中,峰值热通量密度随着AMF的增加而降低,并且随着接触间隙的增加而增加。在研究的参数范围内,阳极点形成的热通量密度在6.1×10〜8W / m〜2〜10.5×10〜8 W / m〜2的范围内。

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