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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A Study on High Temperature Superconducting Coil of Different Coil Arrangements
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A Study on High Temperature Superconducting Coil of Different Coil Arrangements

机译:不同线圈排列的高温超导线圈的研究

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As for the stored energy density, the solenoid coil has the larger value. On the other hand, the toroidal field coil has the least leakage flux. The primary concern of HTS SMES coil is the reduction of the cost, while securing superconducting coil performance. For this purpose, the required HTS tape length needs to be as short as possible. The critical current and $n$ values of HTS tapes depends on the magnetic fields as well as its field angle to the tapes. Therefore, the performance of magnets wound with HTS tapes needs to be analyzed based on above factors. The current-voltage characteristics of the HTS coil were analyzed by means of fitting equations of the critical current and $n$ value obtained from the measured values of the Bi2223/Ag tape. The stored energy of four kinds of coil arrangement was analyzed, thereby pursuing the shortest length of HTS tapes. The toroidal coil requires 58% longer HTS tapes than the solenoidal coil to store the energy of 100 kJ, but 0.01 T leakage field region at the mid-plane is about a half of the solenoid coil.
机译:至于存储的能量密度,电磁线圈具有较大的值。另一方面,环形场线圈具有最小的漏磁通。 HTS SMES线圈的主要关注点是在确保超导线圈性能的同时降低成本。为此,所需的HTS磁带长度必须尽可能短。 HTS磁带的临界电流和$ n $值取决于磁场及其与磁带的场角。因此,需要基于上述因素来分析用高温超导带缠绕的磁体的性能。借助于临界电流和从Bi2223 / Ag胶带的测量值获得的$ n $值的拟合方程,分析了HTS线圈的电流-电压特性。分析了四种线圈布置的储能,从而追求了最短长度的高温超导带。环形线圈需要比电磁线圈长58%的高温超导带来存储100 kJ的能量,但中平面的0.01 T漏磁场区域大约是电磁线圈的一半。

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