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Influence of the radial plates on the transient oscillations in theITER toroidal field (TF) model coil using a finite element approach

机译:使用有限元方法,径向板对ITER环形场(TF)模型线圈中瞬态振荡的影响

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The transient electrical behavior of the racetrack-shaped TF model coil for the International Thermonuclear Experimental Reactor (ITER) during an energy dump has been investigated using a 3D finite element model. Detailed modeling of the radial plates inherently takes into account the eddy currents in the steel structures. Hence, unlike recent investigations using ordinary lumped network models, the influence of the radial plates on the damping and attenuation of the transient oscillations could be considered. Transient analyses for rise times from 0.5 ms to 500 ms have been performed. Additional AC analyses yielded the transfer function of the coil. Alternatively, a lumped network model was established. Frequency dependent values of the network elements, i.e. effective resistances, self and mutual inductances, have been determined using 2D FE models in a frequency range up to 500 kHz. Thus, it was possible to implement frequency dependent effects into the network model as well
机译:已经使用3D有限元模型研究了国际热核实验堆(ITER)跑道形TF模型线圈在能量释放过程中的瞬态电行为。径向板的详细建模固有地考虑了钢结构中的涡流。因此,与最近使用普通集总网络模型进行的研究不同,可以考虑径向板对瞬态振荡的阻尼和衰减的影响。进行了从0.5 ms到500 ms的上升时间的瞬态分析。附加的交流分析得出了线圈的传递函数。或者,建立集总网络模型。网络元件的频率相关值,即有效电阻,自感和互感,已使用2D FE模型在高达500 kHz的频率范围内确定。因此,也有可能在网络模型中实现频率依赖性效应

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