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首页> 外文期刊>Cryogenics >Effective thermal conductivity of the conductor insulation of the ITER toroidal field model coil at operation temperature
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Effective thermal conductivity of the conductor insulation of the ITER toroidal field model coil at operation temperature

机译:ITER环形场模型线圈在工作温度下导体绝缘的有效导热系数

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摘要

During current transients in the toroidal field model coil (TFMC), the radial plates carry eddy currents that generate Joule heat. The heat sink is the forced flow helium cooling of the conductor. Vice versa, during accidents, the radial plates act as a heat sink during the heat up of the conductor. In both cases, the time constant of heat transfer is given by the thermal conductivity of the insulation of the conductor. The code system MAGS (magnet system) is used to recalculate fast discharge experiments of the TFMC at the TOSKA facility. The model takes into account the transient magnetic field, the current in the conductor circuit, in the radial plates and coil case, the ac-losses in the conductor and the helium flow. The results clearly indicate that the power distribution in the radial plate should be taken into account and the thermal conductivity of the insulation is considerably lower than assumed up to now.
机译:在环形场模型线圈(TFMC)中的电流瞬变过程中,径向板承载的涡流会产生焦耳热。散热器是导体的强制氦气冷却。反之亦然,在事故期间,径向板在导体加热期间充当散热器。在这两种情况下,传热的时间常数都由导体绝缘层的热导率给出。代码系统MAGS(磁铁系统)用于重新计算TOSKA设施中TFMC的快速放电实验。该模型考虑了瞬变磁场,导体电路中的电流,径向板和线圈壳体中的电流,导体中的ac损耗和氦气流量。结果清楚地表明,应考虑径向板上的功率分布,并且绝缘材料的热导率远低于目前的假设。

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