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Investigation on Plasma Jet Flow Phenomena During DC Air Arc Motion in Bridge-Type Contacts

机译:桥式触头直流空气电弧运动过程中等离子体射流现象的研究

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Arc plasma jet flow in the air was investigated under a bridge-type contacts in a DC 270 V resistive circuit. We characterized the arc plasma jet flow appearance at different currents by using high-speed photography, and two polished contacts were used to search for the relationship between roughness and plasma jet flow. Then, to make the nature of arc plasma jet flow phenomena clear, a simplified model based on magnetohydrodynamic (MHD) theory was established and calculated. The simulated DC arc plasma was presented with the temperature distribution and the current density distribution. Furthermore, the calculated arc flow velocity field showed that the circular vortex was an embodiment of the arc plasma jet flow progress. The combined action of volume force and contact surface was the main reason of the arc jet flow.
机译:在直流270 V电阻电路中的桥式触点下研究了空气中的电弧等离子体射流。我们通过使用高速摄影技术来表征电弧等离子体射流在不同电流下的外观,并使用两个抛光触点来搜索粗糙度与等离子体射流之间的关系。然后,为弄清电弧等离子体射流现象的性质,建立了基于磁流体动力学(MHD)理论的简化模型并进行了计算。给出了模拟的直流电弧等离子体的温度分布和电流密度分布。此外,计算出的电弧流速场表明,圆形涡旋是电弧等离子体射流进展的一个实施例。体积力和接触表面的共同作用是电弧射流的主要原因。

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