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Model of the flux flow losses in a high-temperature superconducting tape exposed to both AC and DC transport currents and magnetic fields

机译:暴露于交流和直流传输电流和磁场的高温超导带中磁通量流损失的模型

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Recent progress in the high-temperature superconductor technology will probably be of importance for future power applications. In these applications, the power loss is a very important quantity, which has to be described in a relevant manner to obtain an optimum utilization of the conductor. In most power applications the magnitude of the transport current will be quite close to the critical current. In addition to the hysteresis losses, for such high currents, the flux flow losses have to be taken into account. We present a semiempirical model of the flux flow losses in a tape shaped conductor, based on measurements and reasonable physical assumptions. The model gives the flux flow loss as function of temperature, a transport current consisting of both ac and dc components and an applied homogeneous magnetic field with an amplitude proportional to the current.
机译:高温超导体技术的最新进展可能对未来的电源应用很重要。在这些应用中,功率损耗是非常重要的数量,必须以相关的方式进行描述才能获得最佳的导体利用率。在大多数电源应用中,传输电流的大小将非常接近临界电流。除了磁滞损耗外,对于这种大电流,还必须考虑磁通流量损耗。我们基于测量和合理的物理假设,提出了带状导体中磁通流量损失的半经验模型。该模型给出了磁通量流量损耗随温度的变化,由交流和直流分量组成的传输电流以及所施加的均相磁场(其幅度与电流成比例)的函数。

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