Recent Advances in Theoretical and Numerical Studies of Wire Array Z-Pinch in the IAPCM

被引:0
|
作者
Ding, Ning [1 ]
Zhang, Yang [1 ]
Xiao, Delong [1 ]
Wu, Jiming [1 ]
Huang, Jun [1 ]
Yin, Li [1 ]
Sun, Shunkai [1 ]
Xue, Chuang [1 ]
Dai, Zihuan [1 ]
Ning, Cheng [1 ]
Shu, Xiaojian [1 ]
Wang, Jianguo [1 ]
Li, Hua [1 ]
机构
[1] Inst Appl Phys & Computat Math, Beijing 100088, Peoples R China
关键词
D O I
10.1063/1.4904789
中图分类号
O59 [应用物理学];
学科分类号
摘要
Fast Z-pinch has produced the most powerful X-ray radiation source in laboratory and also shows the possibility to drive inertial confinement fusion (ICF). Recent advances in wire-array Z-pinch researches at the Institute of Applied Physics and Computational Mathematics are presented in this paper. A typical wire array Z-pinch process has three phases: wire plasma formation and ablation, implosion and the MRT instability development, stagnation and radiation. A mass injection model with azimuthal modulation coefficient is used to describe the wire initiation, and the dynamics of ablated plasmas of wire-array Z-pinches in (r, theta) geometry is numerically studied. In the implosion phase, a two-dimensional(r, z) three temperature radiation MHD code MARED has been developed to investigate the development of the Magneto-Rayleigh-Taylor(MRT) instability. We also analyze the implosion modes of nested wire-array and find that the inner wire-array is hardly affected before the impaction of the outer wire-array. While the plasma accelerated to high speed in the implosion stage stagnates on the axis, abundant x-ray radiation is produced. The energy spectrum of the radiation and the production mechanism are investigated. The computational x-ray pulse shows a reasonable agreement with the experimental result. We also suggest that using alloyed wire-arrays can increase multi-keV K-shell yield by decreasing the opacity of K-shell lines. In addition, we use a detailed circuit model to study the energy coupling between the generator and the Z-pinch implosion. Recently, we are concentrating on the problems of Z-pinch driven ICF, such as dynamic hohlraum and capsule implosions. Our numerical investigations on the interaction of wire-array Z-pinches on foam convertors show qualitative agreements with experimental results on the "Qiangguang I" facility. An integrated two-dimensional simulation of dynamic hohlraum driven capsule implosion provides us the physical insights of wire-array plasma acceleration, shock generation and production, hohlraum formation, radiation ablation and fuel compression.
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页码:112 / 117
页数:6
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