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Design and optimization of the 12.5 T EFDA dipole magnet

机译:12.5 T EFDA偶极磁体的设计和优化

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摘要

The aim of this paper is to provide an overview of a recent study carried out-within the framework of the European Fusion Program-to design a 12.5 T superconducting dipole. By focusing on the CICC based design option, the overall design procedure is presented. In particular, the 2D optimization of the dipole cross section is described including the magneto-static analysis of the winding and iron yoke, the mechanical analysis of the conductor jacket, insulation and outer cylinder, the conductor hot spot analysis, etc. As far as the thermo-hydraulic design is concerned, simulations of nominal as well as offset operating conditions (e.g., magnet quench) are presented with emphasis on their role played in the overall magnet design. For example, diagrams reporting the helium heat removal capabilities, pressure drop, mass flow, etc. are shown and their usefulness as guidance for the magnet designer described.
机译:本文的目的是概述在欧洲聚变计划框架内设计12.5 T超导偶极子的最新研究。通过关注基于CICC的设计选项,介绍了总体设计过程。特别地,描述了偶极子截面的二维优化,包括绕组和铁轭的静磁分析,导体护套,绝缘和外圆柱体的力学分析,导体热点分析等。就热工液压设计而言,将对标称及偏置工作条件(例如,磁铁淬火)进行仿真,并重点介绍其在整体磁铁设计中的作用。例如,显示了报告氦气除热能力,压降,质量流量等的图表,并描述了它们作为磁体设计者的指导的有用性。

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