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Magnetohydrodynamic simulation of current switching by explosive opening switches of different types

机译:不同类型爆炸性断开开关进行电流开关的磁流体动力学模拟

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The MEG-2D two-dimensional Eulerian design procedure was used for magnetohydrodynamic simulation of the megaampere current switching process by an explosive opening switch. This paper presents simulation results for the current switching of a helical magnetocumulative generator (MCG) by explosive opening switches of different types at the same parameters of the switching scheme, thickness of the breaking conductor made of copper foil, the breaking current, and the number of opening switch elements. Simulation results for current switching by an explosive opening switch with a ribbed barrier for different thickness of the broken copper foil conductor are also presented. In the case of using a foil 0.3 mm thick, a ribbed barrier with steel inserts on the ribs with optimal parameters was investigated. It is shown that at a foil thickness less than 0.2 mm, decreasing the depth of the groove in the barrier does not lead to an increases in the time of triggering of the opening switch.
机译:MEG-2D二维欧拉设计程序用于通过爆炸性断开开关对兆安培电流切换过程进行磁流体动力学模拟。本文介绍了在相同开关方案参数,铜箔制成的分断导体的厚度,分断电流和数量的相同参数下,通过不同类型的爆炸性断开开关对螺旋磁累积发电机(MCG)进行电流切换的仿真结果。打开开关元件。还给出了针对具有不同厚度的铜箔破损导体的带肋屏障的爆炸性断开开关进行电流切换的仿真结果。在使用厚度为0.3 mm的箔的情况下,研究了带有最佳参数的肋条上带有钢质嵌条的肋条屏障。已经表明,在箔片厚度小于0.2mm的情况下,减小屏障中的凹槽的深度不会导致打开断开开关的时间增加。

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