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Analyses of Low- and High-Margin Quench Propagation in the European DEMO TF Coil Winding Pack

机译:欧洲DEMO TF线圈绕包中低和高余量淬火传播的分析

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The superconducting toroidal field (TF) coils composed of a winding pack (WP) without radial plates, encapsulated in a steel casing, are currently being studied in the framework of the EUROfusion work package magnets (WPMAG). The ENEA (Italian National Agency for New Technologies, Energy and Sustainable Economic Development) 2014 TF WP design consists of graded (Nb3Sn + NbTi), double-layer wound rectangular cable-in-conduit conductors, for which the operational as well as accidental transients must be carefully investigated. This paper presents the analysis of the quench propagation inside the TF WP proposed in 2014 by ENEA using the state-of-the-art thermal-hydraulic code 4C. Different locations are considered for the quench initiation: 1) at the maximum temperature margin Δ Tmarmax, resulting in the most severe hotspot condition and 2) at the minimum temperature margin Δmarmin, to analyze the most probable event. The evolution of voltage, normal zone, hotspot temperature, and maximum pressure in the TF WP is computed comparing the results from the two cases, highlighting the role of heat diffusion inside the TF WP.
机译:目前,在EUROfusion工作套件磁体(WPMAG)的框架内,正在研究由无径向板的绕组组(WP)组成的超导环形磁场(TF)线圈,这些线圈封装在钢制外壳中。 ENEA(意大利国家新技术,能源和可持续经济发展国家机构)2014 TF WP设计包括分级(Nb3Sn + NbTi)双层绕制矩形导管中的导体,其工作瞬态和意外瞬态必须仔细调查。本文介绍了ENEA在2014年使用最先进的热工代码4C对TF WP内部淬火传播的分析。考虑不同的位置进行淬火:1)在最大温度裕度ΔTmarmax处,导致最严重的热点条件; 2)在最小温度裕度Δmarmin处进行最可能的事件分析。比较了两种情况的结果,计算了TF WP中电压,正常区域,热点温度和最大压力的变化,突出了TF WP内部热量扩散的作用。

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