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Engineering design optimisation of the superconducting end cap toroid magnets for the ATLAS experiment at LHC

机译:大型强子对撞机ATLAS实验用超导端盖环形磁铁的工程设计优化

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Precision muon momentum measurements at the highest LHC luminosity is a prime objective for the ATLAS experiment. To realise this objective the muon detector is based on a large, superconducting, air-cored toroid magnet system consisting of a long barrel and two end cap toroids. The end-cap toroids are required to produce strong bending powers, 4-8 Tm, over a radial span from 1.5-5 m. This paper presents the final engineering design which includes a number of design optimisation features. The optimisation of the cold mass structure to reduce internal stresses, the developments in resin technology to give greater safety margins in operation and novel techniques for cold mass support systems are described. Final design proposals for quench protection and control are presented with manufacture, assembly and installation plans.
机译:在最高LHC亮度下进行精确的μ子动量测量是ATLAS实验的主要目标。为了实现这一目标,μ子检测器基于一个大型的超导空芯环形磁石系统,该系统由一个长筒和两个端盖环形磁石组成。要求端盖环形线圈在1.5-5 m的径向跨度上产生4-8 Tm的强弯曲力。本文介绍了最终的工程设计,其中包括许多设计优化功能。描述了优化冷质量体结构以减少内部应力,树脂技术的发展以提供更大的运行安全裕度以及冷质量体支撑系统的新技术。有关淬火保护和控制的最终设计建议与制造,组装和安装计划一起提出。

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