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Protection Against High-Energy Breakdowns in Neutral Beam Systems for Future Fusion Reactors

机译:防止未来聚变反应堆中性束系统发生高能故障的保护

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In this paper, the capacitances of the two-stage bushing that is installed in the 1-MV test bed for neutral beam injectors in the future fusion reactors are calculated by modeling the bushing in a 3-D electrostatic code. One of the modeling results is the stored energy in the bushing, which corresponds to 1/2 CV2. After evaluating the bushing capacitance, a MATLAB/Simulink model is presented to model the possible breakdown in the bushing and between the electrodes in the 1-MV test bed. When a breakdown occurs between anode and cathode, an overcurrent is drawing that can cause damage in the electrode surfaces while an overvoltage takes place when the breakdown happens between the bushing stages. Such damage has been observed experimentally in the past. This paper also presents some of the possible protection against the breakdown in the 1-MV test bed to dissipate the stored energy in order to protect the electrode surfaces and the bushing. The suggested protections presented in this paper are damping resistors, surge arrester individually, and both of them. Also, a coil can be added to the DR either in series or in parallel.
机译:在本文中,通过在3-D静电代码中对套管进行建模,可以计算出安装在1-MV测试台中用于未来聚变反应堆的中性束注入器的两级套管的电容。建模结果之一是套管中存储的能量,相当于1/2 CV2。在评估了套管电容之后,提出了一个MATLAB / Simulink模型,以对套管和1-MV测试台中电极之间的可能击穿进行建模。当阳极和阴极之间发生击穿时,会产生过电流,这会导致电极表面损坏,而当在套管级之间发生击穿时会发生过电压。过去已经通过实验观察到了这种损坏。本文还提出了一些可能的保护措施,以防止1-MV测试床击穿,以耗散存储的能量,从而保护电极表面和套管。本文提出的建议保护措施是:阻尼电阻,避雷器,以及两者。另外,可以将线圈串联或并联添加到DR。

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