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Predictive 1-D thermal-hydraulic analysis of the prototype HTS current leads for the ITER correction coils

机译:用于ITER校正线圈的原型HTS电流引线的一维热工液压预测分析

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We present an analysis of the prototype high-temperature superconducting (HTS) current leads (CLs) for the ITER correction coils, which will operate at 10 kA. A copper heat exchanger (HX) of the meander-flow type is included in the CL design and covers the temperature range between room temperature and 65 K, whereas the HTS module, where Bi-2223 stacked tapes are positioned on the outer surface of a stainless steel hollow cylindrical support, covers the temperature range between 65 K and 4.5 K. The HX is cooled by gaseous helium entering at 50 K, whereas the HTS module is cooled by conduction from the cold end of the CL. We use the CURLEAD code, developed some years ago and now supplemented by a new set of correlations for the helium friction factor and heat transfer coefficient in the HX, recently derived using Computational Fluid Dynamics. Our analysis is aimed first of all at a "blind" design-like prediction of the CL performance, for both steady state and pulsed operation. In particular, the helium mass flow rate needed to guarantee the target temperature at the HX-HTS interface, the temperature profile, and the pressure drop across the HX will be computed. The predictive capabilities of the CURLEAD model are then assessed by comparison of the simulation results with experimental data obtained in the test of the prototype correction coil CLs at ASIPP, whose results were considered only after the simulations were performed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们对ITER校正线圈的原型高温超导(HTS)电流引线(CL)进行了分析,该工作电流为10 kA。 CL设计中包括曲流式的铜热交换器(HX),其覆盖的温度范围为室温至65 K,而HTS模块则将Bi-2223堆叠的胶带放置在铜箔的外表面上。不锈钢空心圆柱支撑,温度范围介于65 K和4.5 K之间。HX由进入50 K的气态氦冷却,而HTS组件通过CL冷端的传导进行冷却。我们使用几年前开发的CURLEAD代码,现在通过最近使用计算流体动力学推导的HX中的一组新的氦摩擦系数和传热系数来进行补充。我们的分析首先针对稳态和脉冲操作的CL性能的“盲目”设计式预测。特别是,将计算出确保HX-HTS界面上的目标温度所需的氦气质量流量,温度曲线以及HX两端的压降。然后,通过将仿真结果与在ASIPP的原型校正线圈CL的测试中获得的实验数据进行比较,来评估CURLEAD模型的预测能力,只有在执行仿真后才考虑其结果。 (C)2016 Elsevier Ltd.保留所有权利。

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