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Characterization of transport properties variations with magnetic field and temperature of ITER-candidate NbTi strands

机译:运输性能的表征与磁场和浸渍NBTI股线的磁场和温度的变化

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While the International Thermonuclear Experimental Reactor (ITER) conceptual design retained the Nb_3Sn for toroidal field (TF) and central solenoid (CS) coils, the low working field (around 6 T) promoted the choice of NbTi for the poloidal field (PF) coils. EU has carried out the experimental study of industrial NbTi strands and cables with different internal structures in order to choose the one which generate the lowest losses when used in the PF operating conditions (i.e. pulsed field). CEA has contributed to this project through the experimental study of the transport properties variations with respect to magnetic field and temperature of two candidate strands. One of them contains an internal CuNi barrier and the other is Ni-plated. A homemade cryostat is used to control the temperature of the sample which is wound on a VAMAS-like mandrel. J_c measurements are presented here and subsequently the parameters deduced from scaling laws and their variation with temperature between 4.2 and 7 K and with field up to 11 T. A comparison between the two strands characteristics and ITER PF coils criteria is also discussed. The results are in good agreement with literature and lie inside an acceptable range in spite of some discrepancy with the ITER PF criteria: a recent thermo-hydraulic simulation confirmed it. In the future, this study, completed by AC losses measurements on cabled strands, should help to optimise the strands performances below the ITER PF security margins.
机译:虽然国际热核实验反应堆(ITER)概念设计保留了Nb_3Sn为环形场(TF)和中央螺线管(CS)线圈,低工作场(约6 T)促进的NbTi的选择为极向场(PF)线圈。欧盟在为了选择一个在PF操作条件使用时产生的最低损耗(即脉冲场)进行工业的NbTi线股,并与不同的内部结构的电缆的实验研究。 CEA已经通过传输特性的变化相对于磁场和两个候选链温度的实验研究本项目作出了贡献。他们中的一个包含一个内部铜镍屏障,而另一个是镀镍。自制低温恒温器用来控制其卷绕在VAMAS状心轴的样品的温度。 J_c测量这里提出并随后从缩放法推导的参数和它们与温度4.2和7 K的和与现场多达11两条链特性和ITER PF线圈的标准进行了讨论之间T.比较的变化。该结果与文献和谎言在可接受的范围内,尽管一些差异与ITER PF标准的良好的一致性:最近的热工水力模拟证实了它。在未来,这项研究中,通过对电缆绞线交流损耗测量完成后,将有助于优化低于ITER PF安全边际股表现。

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