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Insulation effect on thermal stability of Coated Conductors wires in liquid nitrogen

机译:液氮中涂层导线电线热稳定性的绝缘效应

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Superconducting wires are not perfectly homogeneous in term of critical current as well as stabilization. In resistive fault current limiter applications this could lead to hot spots if the fault current is only slightly above the nominal current of the device. Increasing stabilization by using thicker silver coating for example may prevent this problem but this method implies longer wire length to maintain the same impedance during a fault. Very efficient cooling in another way to prevent hot spots, this can be achieved in nucleate boiling regime. Optimal insulation can be used to prevent film boiling regime, staying in nucleate boiling regime in a much broader temperature range. In this work a novel technique is used to monitor in real time the temperature of the wire during the quench. Using this method several increasing insulation thicknesses are tested, measuring for each the heat exchange rate to the nitrogen bath. Exchange rate measurements are made in quasistatic regime and during the re-cooling of the wire. SuperOx wires provided with different insulation thicknesses exhibit an excellent stability, far above a bare wire. On the other side, for very thick insulations the stability gain is lost. Re-cooling speeds dependency on insulation thicknesses is measured too.
机译:超导导线在临界电流的术语和稳定期间并不完全均匀。在电阻故障电流限制器应用中,如果故障电流仅略高于设备的标称电流,则可能导致热点。通过使用较厚的银涂层增加稳定性,例如可以防止该问题,但这种方法意味着在故障期间保持相同的阻抗。以防止热点的另一种方式非常有效地冷却,这可以实现核心沸腾制度。最佳绝缘可用于防止薄膜沸腾制度,在更广泛的温度范围内保持核心沸腾制度。在这项工作中,使用一种新颖的技术在淬火期间实时监测线的温度。使用该方法测试了几种增加的绝缘厚度,每次热交换速率测量到氮气浴。汇率测量是在Quasistatic制度和电线的再冷却过程中进行的。具有不同绝缘厚度的超速电线具有出色的稳定性,远高于裸线。在另一边,对于非常厚的绝缘体,稳定增益丢失。测量再冷却速度依赖性的绝缘厚度。

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