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The Effect of Shorted Secondary Circuit Material on Quench Protection of an HTS Tape Solenoid discharged across a Varistor

机译:短路次级电路材料对压敏电阻排出的HTS胶带螺线管淬火保护的影响

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Studies suggest that an insulated ReBCO tape solenoid coil that is well-coupled inductively to shorted secondary can effectively be quench protected by discharging the coil across a constant voltage resistor. The discharge voltage across the constant voltage resistor is much lower than it would be for a constant resistance resistor that is used to achieve the same final quench temperature with or without a shorted secondary. How this quench protection works, depends on the constant voltage resistor characteristics, the properties of the shorted secondary circuit material and the amount of the material in the circuit. A previous paper suggests that the RRR shorted secondary circuit material is not important, which means that aluminum can be used in the secondary circuit and structural aluminum can support both the coil and the secondary circuit when that aluminum is on the outside of a solenoidal coil.
机译:研究表明,通过在恒压电阻器上释放线圈,可以有效地淬灭被电感耦合到短路次级耦合到短路次级耦合到短路次级的绝缘雷带螺线管线圈。 恒定电压电阻上的放电电压远低于恒定电阻电阻的远低得多,该电阻电阻用于实现与短路次级的相同的最终骤冷温度。 如何淬火保护工作,取决于恒定电压电阻特性,短路次级电路材料的性质和电路中的材料的量。 先前的论文表明RRR短路的二级电路材料并不重要,这意味着当该铝在电磁线圈的外部时,铝可以在次级电路和次级电路中使用铝。

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