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Analysis of Maximum Voltage Transient of JT-60SA Toroidal Field Coils in Case of Fast Discharge

机译:快速放电时JT-60SA环形场线圈的最大电压瞬态分析

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The voltage transient appearing across and inside the toroidal field (TF) coils of JT-60SA in case of fast voltage variation, such as a safety discharge operated by the quench protection circuit (QPC), can be significantly high. In fact, the voltage distribution between coils and inside the winding can be not uniform during fast transient, being influenced by the presence of parasitic capacitances. A simplified electrical model of the TF coils has been developed to investigate this aspect. Its robustness has been proved by means of parametric sensitivity analysis, and the impact of the included simplifications has been evaluated. The obtained model has been used in conjunction with an electrical model of the TF circuit elements, including a simplified model of the QPC able to reproduce the voltage appearing across its terminals as observed during experimental operation of the QPC prototype. The worst case in terms of transient voltage applied to the winding has been identified, corresponding to a fault to ground occurring just after QPC operation. It has been verified that the resulting voltage is largely inside the coil insulation capability defined by performed insulation voltage tests.
机译:在快速电压变化的情况下(例如由失超保护电路(QPC)操作的安全放电),JT-60SA环形线圈(TF)线圈的两端和内部出现的瞬态电压可能会很高。实际上,受寄生电容的影响,在快速瞬变过程中,线圈之间和绕组内部的电压分布可能不均匀。已经开发出TF线圈的简化电气模型来研究此方面。它的鲁棒性已通过参数敏感性分析得到了证明,并且已评估了所包含简化方法的影响。所获得的模型已与TF电路元件的电气模型结合使用,其中包括QPC的简化模型,该模型能够重现QPC原型实验操作期间在其端子上出现的电压。已经确定了在施加到绕组的瞬态电压方面最坏的情况,这对应于QPC操作后立即发生的接地故障。已经证实,所产生的电压在很大程度上由执行的绝缘电压测试确定的线圈绝缘能力之内。

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