论文标题
使用相似性缩放探索Maglif内爆的参数空间。 ii。当前缩放
Exploring the parameter space of MagLIF implosions using similarity scaling. II. Current scaling
论文作者
论文摘要
磁化衬里惯性融合(MAGLIF)是一种磁惯性融合(MIF)概念,目前正在Z脉冲功率设施上进行研究。 MAGLIF平台在停滞时达到了有趣的血浆条件,并在实验室产生了明显的融合产率。鉴于Maglif的相对成功,有很大的兴趣将平台扩展到更高的峰值电流。但是,由于实验输入参数空间的较大维度以及MIF内爆的大量不同的物理过程,因此缩放MAGLIF并非完全直接。在这项工作中,我们提出了一种新颖的方法,将Maglif缩放到更高的电流。我们的方法基于相似性(或相似)缩放,并尝试保留已经知道或在当今Z脉冲功率驱动器上研究的许多物理体制。通过避免对未探索和/或更少的良好理解的政权进行重大偏差,可以减少对未来扩大实验的意外结局的风险。使用基于相似性缩放的参数,我们得出了表征MAGLIF负载的实验输入参数的缩放规则(作为驱动内爆的特征电流的功能)。然后,我们测试了各种测量绩效的估计缩放定律,以与2D辐射的结果 - 杂质 - 流动力液压均模拟。在缩放理论和仿真结果之间找到一致。
Magnetized Liner Inertial Fusion (MagLIF) is a magneto-inertial-fusion (MIF) concept, which is presently being studied on the Z Pulsed Power Facility. The MagLIF platform has achieved interesting plasma conditions at stagnation and produced significant fusion yields in the laboratory. Given the relative success of MagLIF, there is a strong interest to scale the platform to higher peak currents. However, scaling MagLIF is not entirely straightforward due to the large dimensionality of the experimental input parameter space and the large number of distinct physical processes involved in MIF implosions. In this work, we propose a novel method to scale MagLIF loads to higher currents. Our method is based on similarity (or similitude) scaling and attempts to preserve much of the physics regimes already known or being studied on today's Z pulsed-power driver. By avoiding significant deviations into unexplored and/or less well-understood regimes, the risk of unexpected outcomes on future scaled-up experiments is reduced. Using arguments based on similarity scaling, we derive the scaling rules for the experimental input parameters characterizing a MagLIF load (as functions of the characteristic current driving the implosion). We then test the estimated scaling laws for various metrics measuring performance against results of 2D radiation--magneto-hydrodynamic HYDRA simulations. Agreement is found between the scaling theory and the simulation results.