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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Investigation of the transient electrical behavior of the ITER central solenoid model coil (CSMC) during safety discharge
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Investigation of the transient electrical behavior of the ITER central solenoid model coil (CSMC) during safety discharge

机译:安全放电期间ITER中央螺线管模型线圈(CSMC)的瞬态电性能研究

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The electrical behavior of the ITER central solenoid model coil (CSMC) exposed to the voltage rise occurring during a safety discharge initiated by a counter acting current switch has been studied. A detailed network model has been set up to determine the transient overvoltages inside the windings of the CSMC when the coil is subjected to transient voltages. The analysis takes into account the frequency-dependent resistance of the conductor in case of high-frequency oscillations, and considers the influence of the extensive instrumentation cables of the coil. The model's accuracy is demonstrated over a frequency range up to 30 KHz. The total inductance and capacitance of the coil model are in very good agreement with previously obtained measurements and design values. The discharge circuit has also been modeled in order to accurately simulate the discharge process. It was found that the terminal voltage generated during a safety discharge causes transient oscillations inside the windings. However, they do not cause overvoltages exceeding the maximum acceptable insulation stress. The influence of several parameters of the discharge circuit on the rise time and shape of the resulting terminal voltage was investigated. Controlling these values might be a measure to prevent excessive internal oscillations for larger coils with lower natural frequencies than the CSMC.
机译:研究了ITER中央螺线管模型线圈(CSMC)的电性能,该线圈暴露于由反作用电流开关启动的安全放电过程中发生的电压上升。已经建立了详细的网络模型,以确定当线圈承受瞬态电压时,CSMC绕组内部的瞬态过电压。该分析考虑了高频振荡情况下导体的频率相关电阻,并考虑了线圈中广泛使用的仪表电缆的影响。在高达30 KHz的频率范围内证明了该模型的准确性。线圈模型的总电感和电容与先前获得的测量值和设计值非常吻合。放电电路也已建模,以准确模拟放电过程。已经发现,在安全放电期间产生的端子电压会引起绕组内部的瞬态振荡。但是,它们不会导致过电压超过最大可接受的绝缘应力。研究了放电电路的几个参数对上升时间和最终端子电压形状的影响。控制这些值可能是一种措施,以防止固有频率低于CSMC的较大线圈产生过多的内部振荡。

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