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A Numerical Model Comprising the Effect of Number of Turns on AC Losses in 2G HTS Coated Conductor at 77K using H-formulations

机译:包含匝数对2G HTS涂层导体在77K下使用H公式交流损耗的影响的数值模型

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Coated conductors are widely employed in various power applications including superconducting motors, fault current limiters, energy storage, transmission and distribution systems etc. Ideal 2G (YBCO) superconductors are having almost zero resistance when cooled below 90K and can carry currents without loss. Coated conductors are made from Yttrium-Barium ceramic powder where stabilizer and substrate are being coupled together to strengthen the tape architecture. Practically, AC losses are found to occur when current is flowing through the tape and the losses are high when large currents flowing through the coated conductors. In this work, a 2D numerical model has been developed where the effect of number of turns on the AC losses for magnet coils/stacks has been examined using SCS 12050 tape having 12mm width and critical temperature as 240 A. The numerical model is based on H-formulations integrated with E-J Power law where homogenized approach has been proposed to estimate the magnetic flux density and AC losses. The model is being tested for a sinusoidal input having 50 Hz frequency for the full cycle.
机译:涂层导体广泛用于各种电力应用中,包括超导电动机,故障电流限制器,能量存储,传输和分配系统等。理想的2G(YBCO)超导体在冷却至90K以下时几乎具有零电阻,并且可以无损耗地传输电流。涂层导体由钇钡陶瓷粉末制成,其中稳定剂和基材耦合在一起以增强胶带结构。实际上,发现当电流流过带子时会发生交流损耗,而当大电流流过涂层导体时损耗会很高。在这项工作中,已经开发了一个二维数值模型,其中使用具有12mm宽度和240 A临界温度的SCS 12050胶带检查了匝数对电磁线圈/线圈组AC损耗的影响。该数值模型基于结合EJ幂定律的H公式,其中提出了均质方法来估计磁通密度和交流损耗。正在针对整个周期针对50 Hz频率的正弦输入对模型进行测试。

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