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3D finite element simulation and synthetic tests of vacuum interrupters with axial magnetic field contacts

机译:具有轴向磁场触点的真空灭弧室的3D有限元模拟和综合测试

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Axial magnetic field improves the interruption ability of vacuum circuit breakers. It is known that the design influences the axial magnetic field (AMF) distribution, current distribution and hence the interruption performance. In this paper, the authors present a numerical and experimental study for several segmented coil geometries. The numerical study involves three-dimensional AMF simulations and the? experimental study evaluates their performance in short-circuit interruption tests. The calculations are analysed for magnetic field distribution. Two empirical models, which relate to the performance design parameters are widely accepted. From this, they deduce several criteria for "effective contact area" depending on the magnetic field strength and position (in time and in space). The first results suggest that the interruption ability of AMF vacuum interrupters could be described by a simple relationship. the interruption ability is proportional to the square of the contact diameter times the "effective area" percentage.
机译:轴向磁场提高了真空断路器的中断能力。已知设计会影响轴向磁场(AMF)分布,电流分布,进而影响中断性能。在本文中,作者提出了几种分段线圈几何形状的数值和实验研究。数值研究涉及三维AMF模拟,并且?实验研究评估了它们在短路中断测试中的性能。分析计算的磁场分布。涉及性能设计参数的两个经验模型被广泛接受。据此,他们根据磁场强度和位置(在时间和空间上)得出“有效接触面积”的几个标准。最初的结果表明,AMF真空灭弧室的阻断能力可以通过简单的关系来描述。中断能力与接触直径的平方乘以“有效面积”百分比成正比。

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