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Power Flow in a Magnetically Insulated Recyclable Transmission Line for a Z-Pinch-Driven Inertial-Confinement-Fusion Energy System

机译:Z捏驱动惯性约束融合能源系统的电磁绝缘可循环传输线中的功率流

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Power flow in a recyclable transmission line (RTL) for a z-pinch-driven inertial-confinement fusion energy (IFE) system is studied. In a magnetically insulated transmission line, plasma forms by explosive emission on the cathode but emission from the anode does not occur. However, in an RTL, the large linear current density that flows in the electrodes at small radius near the load resistively heats the anode surface, leading to anode plasma formation and ion emission. If the impedance of the RTL is too small, large ion current losses can occur and large electron flow currents can be launched into the z-pinch load region. If only the boundary current drives the z-pinch load, then these large electron flow currents can introduce a polarity effect with more bound current in the anode than the cathode. While being mindful of the IFE system requirement to maintain a small RTL inductance, these problems are avoided by choosing the line impedance at the load end of the RTL to be well above the effective impedance of the imploding load. In this case, the ion current losses are tolerable and the electron flow current is negligibly small. For the present baseline design with a peak current of 60 MA driving a 100-ns implosion, these power flow constraints require a gap of order 2 mm or more at the load end of the RTL
机译:研究了z捏合驱动惯性约束聚变能量(IFE)系统的可回收传输线(RTL)中的功率流。在磁绝缘的传输线中,等离子体通过在阴极上爆炸性发射而形成,但不会发生从阳极发射的现象。然而,在RTL中,在负载附近的小半径的电极中流动的大线性电流密度电阻性地加热阳极表面,导致阳极等离子体形成和离子发射。如果RTL的阻抗太小,则可能会发生较大的离子电流损耗,并且会向z捏合负载区域中发射大的电子流电流。如果仅边界电流驱动Z夹负载,那么这些大的电子流动电流会引入极性效应,使阳极中的束缚电流大于阴极。在考虑到IFE系统要求保持较小的RTL电感的同时,通过将RTL负载端的线路阻抗选择为远高于爆炸负载的有效阻抗,可以避免这些问题。在这种情况下,离子电流损失是可以容忍的,并且电子流动电流可以忽略不计。对于当前的基线设计,峰值电流为60 MA,驱动100 ns内爆,这些功率流约束要求RTL负载端的间隙为2 mm或更大

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