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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Conceptual Design of a Large-Aperture Dipole Magnet for HL-LHC Upgrade
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Conceptual Design of a Large-Aperture Dipole Magnet for HL-LHC Upgrade

机译:用于HL-LHC升级的大孔径偶极磁铁的概念设计

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The development of a large-aperture (120–180 mm) dipole magnet is proposed in the framework of the CERN-KEK cooperation program. The application target is the D1 magnet (separation dipoles) replacement for the HL-LHC (High Luminosity—Large Hadron Collider) upgrade. The Cos-theta type coil cross section and the shell-based structure are adopted in the conceptual design of this magnet. The nominal field is estimated to be 6–10 T at 1.9 K with a 30-mm-width coil arranged in two layers. The candidates of superconductor are $hbox{Nb}_{3}hbox{Al}$ , $hbox{Nb}_{3}hbox{Sn}$ and Nb-Ti. We present the analytical estimation of the key parameters of this magnet and the simulation of the actual design which includes the field quality, the stray field, and the stress distribution in the coil.
机译:在CERN-KEK合作计划的框架内,提出了开发大孔径(120-180 mm)偶极磁体的建议。应用目标是D1磁体(分离偶极子)替代HL-LHC(高光度-大强子对撞机)升级。该磁体的概念设计采用了Cos-theta型线圈的横截面和基于壳的结构。 1.9 K的标称磁场估计为6-10 T,宽度为30 mm的线圈分为两层。超导体的候选者是$ hbox {Nb} _ {3} hbox {Al} $,$ hbox {Nb} _ {3} hbox {Sn} $和Nb-Ti。我们介绍了该磁体的关键参数的分析估计以及实际设计的仿真,其中包括磁场质量,杂散场和线圈中的应力分布。

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