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Peculiarities on voltage - current characteristics of HTS tapes at overloading conditions cooled by liquid nitrogen

机译:液氮冷却超载条件下HTS胶带电压-电流特性的特殊性。

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Electro - technical devices are considered as the most prospective use for high temperature superconductors. For such devices the overload currents due to faults in grids are the operational reality. In these cases the fault currents may forcibly go to superconductors being sometimes dozens times more than the critical currents of HTS. Overloads are the working modes for fault current limiters also. To understand the behavior of HTS devices at overloads it is important to study voltage-current characteristics (VCC) of basic HTS tapes in real cooling conditions. The knowledge of VCC permits to model and to simulate properly HTS devices behavior at overloads. We performed the study of VCC of several HTS tapes at currents several times more than their critical ones. Both, 1-G and 2-G tapes were tested. There were found peculiarities or "spikes" on VCC at rising currents that vanished at decaying currents. It was shown that such peculiarities are determined by the change of cooling conditions from the convective heat exchange to the nucleate boiling. Nucleate boiling activation and development times were determined. Their dependencies on heat release were measured. The data obtained can be used in simulation of heating of real superconducting devices at overload conditions.
机译:电子技术设备被认为是高温超导体的最有前景的用途。对于此类设备,由于电网故障而导致的过载电流是实际操作。在这些情况下,故障电流可能会被强制流到超导体,有时会超过HTS的临界电流数十倍。过载也是故障电流限制器的工作模式。要了解HTS设备在过载情况下的行为,重要的是研究基本HTS磁带在实际冷却条件下的电压-电流特性(VCC)。 VCC的知识可以对过载下的HTS设备行为进行建模和正确模拟。我们对几种HTS磁带的VCC进行了研究,其电流是其临界磁带的几倍。测试了1-G和2-G磁带。在上升的电流上发现了VCC的特性或“尖峰”,而在下降的电流上却消失了。结果表明,这种特性是由冷却条件从对流热交换到核沸腾的变化所决定的。确定了核沸腾的活化和发育时间。测量了它们对放热的依赖性。所获得的数据可用于模拟超载条件下实际超导设备的加热。

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