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Performance of axial magnetic field vacuum interrupters at various transient recovery voltages and contact gaps

机译:轴向磁场真空灭弧室在各种瞬态恢复电压和接触间隙下的性能

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The primary application of vacuum interrupters (VI) is to interrupt short-circuit currents during faults on electrical power systems. One common VI design uses an axial magnetic field (AMF) to force the arc to remain diffuse, thereby allowing the interruption of very high short-circuit currents. In this work, VI's with 62 mm diameter AMF contacts were short-circuit tested in a synthetic circuit at rated voltages ranging from 17.5-38kV, and with contact gaps ranging from 7-19 mm. Despite the wide range of test parameters, the key parameter determining the success of the interruption attempt was the transferred charge during arcing Q. For Q 275 A · s the interruption performance dropped sharply, with a narrow transition region. This performance was observed over the full range of transient recovery voltages (TRV) and contact gaps tested, which represent most of the medium voltage application range. These results suggest that the transferred charge during arcing is a key characteristic for AMF contact designs.
机译:真空灭弧室(VI)的主要应用是在电力系统发生故障时中断短路电流。一种常见的VI设计使用轴向磁场(AMF)迫使电弧保持扩散状态,从而允许中断非常高的短路电流。在这项工作中,具有62 mm直径AMF触点的VI在合成电路中的额定电压范围为17.5-38kV且触点间隙范围为7-19 mm的情况下进行了短路测试。尽管测试参数范围很广,但决定中断尝试成功的关键参数是在电弧放电Q期间转移的电荷。对于Q 275 A·s,中断性能急剧下降,过渡区域狭窄。在瞬态恢复电压(TRV)和测试的接触间隙的整个范围内都观察到了这种性能,这代表了大多数中压应用范围。这些结果表明,电弧放电过程中转移的电荷是AMF触点设计的关键特性。

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