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Model of heat deposition during fast discharge tests of the ITER toroidal field model coil

机译:ITER环形场模型线圈快速放电测试期间的热沉积模型

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In the framework of the ITER (International Thermonuclear Experimental Reactor) project, the TFMC (Toroidal Field Model Coil) has been manufactured by European industry, using about 800 m of a 80 kA Nb3Sn cable-in-conduit conductor to wind the 98 turns of the coil. These turns are wound in 10 pancakes which are inserted inside machined stainless steel radial plates, and the whole winding pack is enclosed in a thick stainless steel casing. These passive conductive structures are expected to experience severe induced eddy currents and associated Joule heating during the last testing phase of the TFMC, when fast discharges are triggered to study the electromagnetic and thermal-hydraulic transient behavior of the coil. Diffusing through insulation, the Joule heating induced in the radial plates will add to the AC losses induced in the superconducting cable. The AC losses along the TFMC winding pack are deduced from accurate magnetic field computations performed by the 3-D magneto-static code TRAPS, the eddy currents are calculated with an analytical model using circuit equations, and the Joule heating diffusion is studied with a 1-D thermal analysis model. Using these heat loads as input data, the helium temperature and pressure increases in the conductor are computed with the finite element code GANDALF. The possibility of a quench of the whole magnet is discussed.
机译:在ITER(国际热核实验堆)项目的框架中,TFMC(环形场模型线圈)由欧洲工业制造,使用约800 m的80 kA Nb3Sn导管内电缆导体绕线98匝。线圈。这些匝被缠绕在10个煎饼中,这些煎饼被插入到经过加工的不锈钢​​径向板上,整个绕组包被封装在一个厚不锈钢外壳中。当触发快速放电以研究线圈的电磁和热-液压瞬态行为时,预计这些无源导电结构会在TFMC的最后测试阶段经历严重的感应涡流和相关的焦耳热。通过绝缘层扩散,在径向板上引起的焦耳热会增加在超导电缆中引起的交流损耗。由3-D静磁代码TRAPS进行的精确磁场计算可得出沿着TFMC绕组组件的交流损耗,使用电路方程通过解析模型计算涡电流,并用1研究了焦耳热扩散-D热分析模型。使用这些热负荷作为输入数据,使用有限元代码GANDALF计算导体中的氦气温度和压力升高。讨论了整个磁体失超的可能性。

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