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Magnetisation and field quality of a cosinetheta dipole magnet wound with coated conductors for rotating gantry for hadron cancer therapy

机译:旋转式龙门架用涂层导体绕制的余弦波偶极磁体的磁化和磁场质量

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Electromagnetic field analyses were carried out to study the influence of coated-conductor magnetisation, i.e. the screening (shielding) current, on the field quality of a dipole magnet in a rotating gantry for hadron cancer therapy. The analyses were made on the cross section of a cosine-theta dipole magnet in a rotating gantry for carbon ions, which generated 2.90 T of magnetic field. The temporal profile (temporal variation) of the magnet current was determined based on the actual excitation schemes of the magnets in the rotating gantry. The experimentally determined superconducting property of a coated conductor was considered, and we calculated the temporal evolutions of the current-density distributions in all the turns of coated conductors in the magnet. From the obtained current-density distributions, we calculated the multipole components of the magnetic field and evaluated the field quality of the magnet. The deviation in the dipole component from its designed value was up to approximately 25 mT, which was approximately 1% of the designed maximum dipole component. Its variation between repeated excitations was approximately 0.03%, and it drifted approximately 0.06% in 10 s. Some compensation schemes might be required to counteract such influence of magnetisation on the dipole component. Meanwhile, the higher multipole components were small, stable, and sufficiently reproducible for a magnet in rotating gantries, i.e. vertical bar Delta b(3)vertical bar similar to 1.1 x 10(-3) and vertical bar Delta b(3)vertical bar similar to 0.2 x 10(-3) in 10 s.
机译:进行了电磁场分析,以研究涂层导体磁化强度(即屏蔽(屏蔽)电流)对旋转龙门架中用于强子癌治疗的偶极磁体的磁场质量的影响。分析是在旋转龙门架中的余弦角偶极磁体的横截面中进行的,用于产生碳离子,产生2.90 T的磁场。根据旋转机架中磁体的实际激励方案确定磁体电流的时间分布(时间变化)。考虑了实验确定的涂层导体的超导性能,我们计算了磁体中涂层导体所有匝数中电流密度分布的时间变化。根据获得的电流密度分布,我们计算了磁场的多极分量并评估了磁体的磁场质量。偶极子分量与其设计值的偏差最大约为25 mT,约为设计最大偶极子分量的1%。重复激励之间的变化约为0.03%,在10 s内漂移约0.06%。可能需要一些补偿方案来抵消这种磁化对偶极子分量的影响。同时,较高的多极分量较小,稳定,并且对于旋转门架中的磁体而言具有足够的重现性,即类似于1.1 x 10(-3)的垂直条Delta b(3)垂直条和垂直条Delta b(3)垂直条在10秒钟内类似于0.2 x 10(-3)。

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