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Study of the potential of three different MgB2 tapes for application in cylindrical coils operating at 20K

机译:三种不同MgB2胶带在20K下工作的圆柱形线圈中的应用潜力的研究

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The goal of this theoretical study is to illustrate the potential of three different MgB2 tapes, developed by Columbus Superconductors, for application in cylindrical coils. First, the distribution of critical currents and electric fields of individual turns is compared when the winding of the model coil is made with tapes having different I-c(B) and anisotropy values. Second, the influence of the winding geometry on basic parameters of cylindrical coils which consist of a set of pancake coils, such as critical current I-cmin, central magnetic field B-0 and stored energy E, is analysed. The winding geometry of the coils, i.e. the outer winding radius and the coil length, with the same inner winding radius, was changed from a disc shape to a long thin solenoid in such a way that the overall tape length was held constant, and considered as a parameter. Finally, the winding cross-section of the coil is optimized with respect to the constant tape length in order to reach the maximum central field. The results of calculations show that for a given overall tape length and inner winding radius there exists only one winding geometry which generates the maximum central field. The overall tape length, as a parameter, is changed in a broad range from 500 m to 10 km. All calculations were performed using the experimental data measured at 20 K while the effect of the anisotropy in the I-c(B) characteristic of the short samples is taken into account.
机译:这项理论研究的目的是说明哥伦布超导体开发的三种不同的MgB2胶带在圆柱线圈中的应用潜力。首先,当使用具有不同I-c(B)和各向异性值的胶带制作模型线圈的绕组时,比较各个线圈的临界电流和电场的分布。其次,分析了绕组几何形状对圆柱线圈基本参数的影响,圆柱线圈由一组薄煎饼线圈组成,例如临界电流I-cmin,中心磁场B-0和存储的能量E。线圈的绕组几何形状(即,具有相同内部绕组半径的外部绕组半径和线圈长度)从圆盘形状更改为细长的螺线管,以使总的磁带长度保持恒定,并考虑了作为参数。最后,相对于恒定的带长度优化线圈的绕组横截面,以便达到最大的中心磁场。计算结果表明,对于给定的总体磁带长度和内部绕组半径,仅存在一个绕组几何体,它会产生最大的中心磁场。磁带的总长度作为参数在500 m到10 km的宽范围内变化。所有计算均使用在20 K下测得的实验数据进行,同时考虑了各向异性对短样品I-c(B)特性的影响。

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