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首页> 外文期刊>Bulletin of the American Physical Society >APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Three Dimensional Magneto-Hydrodynamics Simulations of Auto-Magnetizing Imploding Liners for ICF.
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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Three Dimensional Magneto-Hydrodynamics Simulations of Auto-Magnetizing Imploding Liners for ICF.

机译:APS-等离子体物理APS部门第59届年会-事件-ICF自动磁化内爆衬管的三维磁流体动力学模拟。

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AutoMag [Slutz et al., Phys. Plasmas 24, 012704 (2017)] is a potential next step in the magnetized liner inertial fusion (MagLIF) program. In standard MagLIF, external coils are used to magnetize deuterium gas inside a metal cylindrical liner, which is imploded by the Z-machine at Sandia National Laboratories. In AutoMag, helical slots are cut into the liner and filled with dielectric insulator to form a solenoid, producing an axial magnetic field from the drive current and removing the need for external field coils. Alternatively with external field coils, AutoMag could produce a field-reversed configuration inside the liner. Recent work at Sandia has found that the breakdown of the dielectric material corresponds to the geometry of the liner/dielectric. We explore this finding in 3D resistive-MHD simulations, modeling geometries relevant to both the 20-MA Z facility, and to the 1-MA MAIZE facility at the University of Michigan.
机译:AutoMag [Slutz等,Phys。 Plasmas 24,012704(2017)]是磁化衬里惯性聚变(MagLIF)程序中潜在的下一步。在标准的MagLIF中,外部线圈用于将金属圆柱形衬套内的氘气磁化,该衬套由Sandia国家实验室的Z型机撞击。在AutoMag中,将螺旋槽切入衬套并填充绝缘体以形成螺线管,从而从驱动电流产生轴向磁场,从而无需外部磁场线圈。或者使用外部励磁线圈,AutoMag可以在衬管内部产生反向磁场配置。 Sandia的最新工作发现,电介质材料的击穿与衬里/电介质的几何形状相对应。我们在3D电阻MHD模拟,与20-MA Z设施以及密歇根大学1-MA MAIZE设施相关的几何形状建模中探索了这一发现。

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