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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Numerical study on fundamental properties of a resistive type fault current limiter with QMG bulk superconductor reinforced by metal bypass
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Numerical study on fundamental properties of a resistive type fault current limiter with QMG bulk superconductor reinforced by metal bypass

机译:QMG大块超导体金属旁路增强电阻型故障限流器基本特性的数值研究

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This paper describes the numerical results of electrical, thermal and mechanical properties in a model current limiting device with QMG bulk superconductor reinforced by various kinds of metal bypass. The electric circuit analysis for simulation of current sharing is coupled at each time step with the finite difference method to calculate the temperature distribution inside the device. The obtained results are compared with experimental data carried out previously, and they have a good agreement with each other. The profile of internal stress in the limiting devices is also estimated by means of a commercial code of finite element analysis, and it is concluded that the magnitude of mechanical stress applied to the superconductor is less than an allowable level for each model device.
机译:本文描述了一种模型限流装置中的电,热和机械性能的数值结果,该装置采用QMG大块超导体并通过各种金属旁路增强。用于模拟均流的电路分析在每个时间步均与有限差分法耦合,以计算设备内部的温度分布。将获得的结果与先前进行的实验数据进行比较,它们之间具有很好的一致性。限制装置中的内部应力分布也可以通过商业有限元分析法来估算,并且可以得出结论,施加到超导体上的机械应力的大小小于每个模型装置的允许水平。

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