论文标题
部分可观测时空混沌系统的无模型预测
Conductor Properties and Coil Technology for a Bi2212 Dipole Insert for 20 Tesla Hybrid Accelerator Magnets
论文作者
论文摘要
在15吨NB3SN外表中,开发HTS偶极插入物产生大于5 t的磁场对于为将来的高能量船员生成20吨或更高的田地是必要的。偶极子插入基于带有各种应力管理概念的Cos-Theta线圈几何形状和BI2212超导链和电缆的偶极插入,在Fermilab的内部和超越了美国MDP的努力。最终的目标是开发线圈技术和一种方法,用于管理在NB3SN内部作为混合动力磁铁系统中的NB3SN超导体插件的高温超导体插入物的方法。这份白皮书回顾了BI2212导体属性和线圈技术,并提出了新的想法,以面对BI2212仍然作为加速器磁铁导体提出的挑战。
Developing HTS dipole inserts producing fields larger than 5 T within 15 T Nb3Sn outserts is necessary to generate 20 T or higher fields for future high energy colliders. Dipole inserts based on the cos-theta coil geometry with various stress management concepts and Bi2212 superconducting strand and cable are being developed at Fermilab both within and beyond the U.S.-MDP effort. The ultimate goal is to develop coil technology and an approach to manage azimuthal and radial strains of high temperature superconductor inserts when integrated within Nb3Sn outserts as a hybrid magnet system. This white paper reviews Bi2212 conductor properties and coil technologies, and proposes new ideas to face the challenges that Bi2212 still presents as an accelerator magnet conductor.