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Analysis of the quench propagation along Nb3Sn Rutherford cables with the THELMA code. Part II: Model predictions and comparison with experimental results

机译:使用THELMA代码分析沿Nb3Sn卢瑟福电缆的猝灭传播。第二部分:模型预测以及与实验结果的比较

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To improve the technology of the new generation of accelerator magnets, prototypes are being manufactured and tested in several laboratories. In parallel, many numerical analyses are being carried out to predict the magnets behaviour and interpret the experimental results. This paper focuses on the quench propagation velocity, which is a crucial parameter as regards the energy dissipation along the magnet conductor. The THELMA code, originally developed for cable-in-conduit conductors for fusion magnets, has been used to study such quench propagation. To this purpose, new code modules have been added to describe the Rutherford cable geometry, the material non-linear thermal properties and to describe the thermal conduction problem in transient regime. THELMA can describe the Rutherford cable at the strand level, modelling both the electrical and thermal contact resistances between strands and enabling the analysis of the effects of local hot spots and quench heaters. This paper describes the model application to a sample of Short Model Coil tested at CERN: a comparison is made between the experimental results and the model prediction, showing a good agreement. A comparison is also made with the prediction of the most common analytical models, which give large inaccuracies when dealing with low n-index cables like Nb3Sn cables. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了改进新一代加速器磁体的技术,正在几个实验室中制造和测试原型。同时,正在进行许多数值分析,以预测磁体性能并解释实验结果。本文着重介绍失超传播速度,这是沿着磁导体的能量耗散的关键参数。 THELMA代码最初是为聚变磁体的导管中电缆导体开发的,现已用于研究这种淬火传播。为此,添加了新的代码模块,以描述卢瑟福电缆的几何形状,材料的非线性热特性并描述瞬态状态下的热传导问题。 THELMA可以在绞合线水平上描述卢瑟福电缆,对绞合线之间的电气和热接触电阻建模,并可以分析局部热点和淬火加热器的影响。本文介绍了该模型在CERN测试的短模型线圈样本中的应用:对实验结果和模型预测进行了比较,显示出很好的一致性。还与最常见的分析模型的预测进行了比较,这些模型在处理Nb3Sn电缆等低n指数电缆时会产生很大的误差。 (C)2016 Elsevier Ltd.保留所有权利。

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