XTD-IDA, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
CCS-2, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev E. 2017 May;95(5-1):053206. doi: 10.1103/PhysRevE.95.053206. Epub 2017 May 17.
We perform two-dimensional implosion simulations using a Monte Carlo kinetic particle code. The application of a kinetic transport code is motivated, in part, by the occurrence of nonequilibrium effects in inertial confinement fusion capsule implosions, which cannot be fully captured by hydrodynamic simulations. Kinetic methods, on the other hand, are able to describe both continuum and rarefied flows. We perform simple two-dimensional disk implosion simulations using one-particle species and compare the results to simulations with the hydrodynamics code rage. The impact of the particle mean free path on the implosion is also explored. In a second study, we focus on the formation of fluid instabilities from induced perturbations. We find good agreement with hydrodynamic studies regarding the location of the shock and the implosion dynamics. Differences are found in the evolution of fluid instabilities, originating from the higher resolution of rage and statistical noise in the kinetic studies.
我们使用蒙特卡罗动理学粒子代码进行二维内爆模拟。之所以应用动理学输运代码,部分原因是惯性约束聚变胶囊内爆中会出现非平衡效应,而这些效应不能完全通过流体动力学模拟来捕捉。另一方面,动理学方法能够描述连续流和稀薄流。我们使用单粒子种类进行简单的二维盘形内爆模拟,并将结果与使用流体动力学代码 rage 进行的模拟进行比较。还探讨了粒子平均自由程对内爆的影响。在第二项研究中,我们专注于由感应扰动引起的流体不稳定性的形成。我们发现,在冲击波的位置和内爆动力学方面,与流体动力学研究结果吻合较好。在流体不稳定性的演化方面存在差异,这是由于 rage 的分辨率更高以及动力学研究中的统计噪声造成的。