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Energy balance in a double forming line operated in the bipolar pulse mode

机译:在双极脉冲模式下运行的双成形线中的能量平衡

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The analysis of the energy balance in a double forming line that operates into a resistive load and an ion diode with self-magnetic insulation is presented. The studies were performed using a TEMP-4M accelerator, which consists of a capacitive storage-a pulse-voltage generator (PVG), a double forming line (DFL), and a vacuum ion diode with self-magnetic insulation of electrons (or a resistive load). The accelerator forms double pulses of opposite polarities: the first pulse is negative (300-600 ns, 150-200 kV), and the second is positive (120 ns, 250-300 kV). The energy losses in the forming line caused by the leakage current in water during the line charging and generation of an ion beam were determined, as well as the energy loss in gas-filled gaps. The performed studies showed that the total energy transferred from the PVG to the DFL is equal to the sum of the energy stored in the DFL and the energy loss in the load. The loss due to the leakage in water and in the gas-filled gap was within 4%. The efficiency of the energy transfer from the DFL to the load (a resistive load or a diode) and in the short-circuiting mode was analyzed. It was obtained that 90% of the energy that was stored in the DFL is transferred to the diode, and 90% of this energy is fed to the diode during the beam generation. The main energy loss (9-10%) occurs in gas-filled gaps. In this case, the efficiency of the energy transfer from the DFL to the load is independent of the energy stored in the DFL.
机译:提出了对双成形生产线中能量平衡的分析,该生产线在电阻性负载和具有自磁绝缘的离子二极管中运行。这项研究是使用TEMP-4M加速器进行的,该加速器由一个电容性存储器,一个脉冲电压发生器(PVG),一个双成形线(DFL)和一个具有电子自磁绝缘的真空离子二极管组成。电阻负载)。加速器形成极性相反的双脉冲:第一个脉冲为负(300-600 ns,150-200 kV),第二个脉冲为正(120 ns,250-300 kV)。确定了在管线充电和离子束生成过程中,由于水中的漏电流而导致的成型管线中的能量损失,以及充气间隙中的能量损失。进行的研究表明,从PVG传递到DFL的总能量等于DFL中存储的能量与负载中的能量损失之和。由于水和充气间隙泄漏造成的损失在4%以内。分析了从DFL到负载(电阻负载或二极管)以及在短路模式下的能量传输效率。获得的结果是,DFL中存储的90%的能量转移到了二极管上,并且在光束产生过程中90%的能量被送到了二极管上。主要的能量损失(9-10%)发生在充气间隙中。在这种情况下,从DFL到负载的能量转移效率与DFL中存储的能量无关。

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