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Study on Ampere-Turns of superconducting dipole and quadrupole magnets based on sector coils

机译:基于扇形线圈的超导偶极和四极磁体的安匝数研究

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General expressions of Ampere-Turns for superconducting dipole and quadrupole magnets based on sector coils are proposed. According to the magnetic field generated by simplified coil layouts using the line current theory, the required excitation current to achieve the desired field strength in the aperture is calculated. The contribution of magnetic field by an iron yoke is taken into account by using the image current method. The validity of derived equations is confirmed by applications to main superconducting magnets which have been built in several high energy accelerators. The proposed analytical expressions provide a simple relationship among the bore field, main dimensions of the magnet, and the total excitation current. These expressions are complementary to the existing method in the electromagnetic design, and are shown to be quite similar to those of conventional magnets. Finally, the comparison of Ampere-Turns between superconducting magnets and conventional magnets is presented.
机译:提出了基于扇形线圈的超导偶极和四极磁体安培匝数的一般表达式。根据使用线电流理论由简化的线圈布局产生的磁场,计算出在孔中实现所需场强所需的励磁电流。通过使用镜像电流方法考虑了铁轭对磁场的贡献。推导方程的有效性通过将其应用到已经内置在多个高能加速器中的主要超导磁体上得到了证实。所提出的分析表达式提供了孔场,磁体的主要尺寸和总励磁电流之间的简单关系。这些表达式是电磁设计中现有方法的补充,并且显示出与常规磁体非常相似的表达式。最后,对超导磁体和常规磁体的安培转数进行了比较。

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