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Magnetic Design and Code Benchmarking of the SMC (Short Model Coil) Dipole Magnet

机译:SMC(短模型线圈)偶极磁体的磁性设计和代码基准测试

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摘要

The Short Model Coil (SMC) working group was set in February 2007 to complement the Next European Dipole (NED) program, in order to develop a short-scale model of a Nb3Sn dipole magnet. In 2009, the EuCARD/HFM (High Field Magnets) program took over these programs. The SMC group comprises four laboratories: CERN/TE-MSC group (CH), CEA/IRFU (FR), RAL (UK) and LBNL (US). The SMC magnet is designed to reach a peak field of about 13 Tesla (T) on conductor, using a 2500 A/mm2 Powder-In-Tube (PIT) strand. The aim of this magnet device is to study the degradation of the magnetic properties of the Nb3Sn cable, by applying different levels of pre-stress. To fully satisfy this purpose, a versatile and easy-to-assemble structure has been realized. The design of the SMC magnet has been developed from an existing dipole magnet, the SD01, designed, built and tested at LBNL with support from CEA. The goal of the magnetic design presented in this paper is to match the high field region with the high stress region, located along the dipole straight section. For this purpose, three-dimensional nonlinear parametric models have been implemented using three codes (CAST3M, ANSYS™, and OPERA™). This optimization process has been an opportunity to cross-check the codes. The results of this benchmarking are presented here, along with the final design which incorporates the use of end spacers and a surrounding iron structure to deliver a nominal field of 13 T uniformly distributed along the cable straight section.
机译:短模型线圈(SMC)工作组成立于2007年2月,以补充下一个欧洲偶极子(NED)计划,以便开发Nb3Sn偶极子磁体的短尺度模型。 2009年,EuCARD / HFM(高磁场磁铁)计划接管了这些计划。 SMC组包括四个实验室:CERN / TE-MSC组(CH),CEA / IRFU(FR),RAL(UK)和LBNL(US)。 SMC磁体使用2500 A / mm2粉末在管(PIT)绞合线设计,可在导体上达到约13特斯拉(T)的峰值磁场。该磁体设备的目的是通过施加不同水平的预应力来研究Nb3Sn电缆的磁性能下降。为了完全满足该目的,已经实现了通用且易于组装的结构。 SMC磁体的设计是从现有的偶极磁体SD01开发出来的,SD01在LBNL的设计,制造和测试中得到了CEA的支持。本文提出的磁性设计的目标是使高磁场区域与高应力区域匹配,这些区域位于偶极子直线段上。为此,已经使用三个代码(CAST3M,ANSYS™和OPERA™)实现了三维非线性参数模型。此优化过程为交叉检查代码提供了机会。基准测试的结果以及最终设计均在此处介绍,该最终设计结合了端部垫片和周围的铁结构的使用,可沿电缆直段均匀分布13 T的标称磁场。

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