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Phenomenological approach to simulation of propagation of spots over cathodes of high-power vacuum circuit breakers

机译:模拟高功率真空断路器阴极上斑点传播的现象学方法

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A phenomenological description of an ensemble of a large number of spots on negative contacts of high-power vacuum circuit breakers is developed by means of generalization of the concept of random walk of a single cathode spot in low-current vacuum arcs. The model is formulated in terms of a convection-diffusion equation governing the evolution of the number of spots per unit area, taking into account the variation of the number of spots with the arc current and the “retrograde repulsion” between spots. The approach is applied to description of the distribution of cathode spots during the initial expansion process after arc ignition in conditions of two independent experiments simulating high-power switches. A reasonably good agreement between the theory and the experiment is found. The developed model can be used as a module of global numerical models of the interruption process in high-power vacuum circuit breakers.
机译:通过概括单个阴极点在低电流真空电弧中的随机游动的概念,对大功率真空断路器的负极触点上的大量点进行了整体的现象学描述。该模型是根据对流扩散方程式制定的,该方程式控制了每单位面积的点数演变,同时考虑了点数随电弧电流的变化以及各点之间的“逆行排斥”。该方法适用于描述在两个独立的模拟大功率开关的实验条件下,电弧点火后初始膨胀过程中阴极斑点的分布。在理论和实验之间找到了合理的良好协议。所开发的模型可以用作大功率真空断路器中中断过程的全局数值模型的模块。

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