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一维磁化套筒惯性聚变模拟程序的设计与校验 被引量:2
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作者 赵海龙 张恒第 +1 位作者 王刚华 王强 《强激光与粒子束》 EI CAS CSCD 北大核心 2017年第7期40-45,共6页
在调研跟踪国外磁化套筒惯性聚变(MagLIF)研究领域最新进展的基础上,以一维磁流体力学方程为基础,结合氘氚燃料能量交换方程,建立一维磁化套筒惯性聚变物理模型,并使用Fortran语言编写完成一维数值模拟程序MagLIF-1D;通过与圣地亚实验室... 在调研跟踪国外磁化套筒惯性聚变(MagLIF)研究领域最新进展的基础上,以一维磁流体力学方程为基础,结合氘氚燃料能量交换方程,建立一维磁化套筒惯性聚变物理模型,并使用Fortran语言编写完成一维数值模拟程序MagLIF-1D;通过与圣地亚实验室LASNEX,HYDRA等程序计算结果对比展示,完成程序校验工作,讨论后认为程序计算结果存在差异的主要原因可能来自不同程序对于材料状态方程库的选择;通过计算,MagLIF-1D程序可以直接获得内爆速度、燃料压力、燃料密度、聚变产额等关键物理量,这为后续更好地开展磁化套筒惯性聚变实验设计提供了有力工具。 展开更多
关键词 磁化套筒惯性聚变 数值模拟 maglif-1D
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磁化套筒惯性聚变中轴向磁场演化特征与Nernst效应影响 被引量:1
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作者 赵海龙 王刚华 +4 位作者 肖波 王强 阚明先 段书超 谢龙 《物理学报》 SCIE EI CAS CSCD 北大核心 2021年第13期232-243,共12页
轴向磁场是磁化套筒惯性聚变(magnetized liner inertial fusion,MagLIF)有别于其他惯性约束聚变构型的主要标志之一.本文在建立集成化物理模型并编写一维模拟程序的基础上,通过对ZR装置驱动能力下典型MagLIF负载参数的模拟,系统研究并... 轴向磁场是磁化套筒惯性聚变(magnetized liner inertial fusion,MagLIF)有别于其他惯性约束聚变构型的主要标志之一.本文在建立集成化物理模型并编写一维模拟程序的基础上,通过对ZR装置驱动能力下典型MagLIF负载参数的模拟,系统研究并获得MagLIF各个阶段轴向磁场演化与分布特征,发现预加热引起的压力不平衡导致燃料中磁通保有量并未呈现随时间单调递减的关系,而是反复震荡甚至出现局部短时间内反而增加的演化曲线.通过在磁场演化方程中引入控制项来讨论Nernst效应的影响,计算结果表明随着初始磁场强度降低(30,20,10 T),Nernst效应越发明显,磁通损失增大(28%,44%,73%),a粒子能量沉积比例则大幅降低(44%,27%,4%),因此初始磁场强度不宜太低;预加热结束后应使燃料中温度径向分布尽量均匀、平缓,有助于减少Nernst效应的影响.所取得的研究结果有助于加深对MagLIF中磁通压缩和磁扩散过程的物理图像认知和理解,对未来实验负载参数设计也有重要的指导作用. 展开更多
关键词 磁化套筒惯性聚变 轴向磁场 NERNST效应
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Recent laser upgrades at Sandia's Z-backlighter facility in order to accommodate new requirements for magnetized liner inertial fusion on the Z-machine
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作者 Jens Schwarz Patrick Rambo +6 位作者 Darrell Armstrong Marius Schollmeier Ian Smith Jonathan Shores Matthias Geissel Mark Kimmel John Porter 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2016年第4期1-12,共12页
The Z-backlighter laser facility primarily consists of two high energy, high-power laser systems. Z-Beamlet laser(ZBL)(Rambo et al., Appl. Opt. 44, 2421(2005)) is a multi-kJ-class, nanosecond laser operating at 1054 n... The Z-backlighter laser facility primarily consists of two high energy, high-power laser systems. Z-Beamlet laser(ZBL)(Rambo et al., Appl. Opt. 44, 2421(2005)) is a multi-kJ-class, nanosecond laser operating at 1054 nm which is frequency doubled to 527 nm in order to provide x-ray backlighting of high energy density events on the Z-machine. Z-Petawatt(ZPW)(Schwarz et al., J. Phys.: Conf. Ser. 112, 032020(2008)) is a petawatt-class system operating at 1054 nm delivering up to 500 J in 500 fs for backlighting and various short-pulse laser experiments(see also Figure 10 for a facility overview). With the development of the magnetized liner inertial fusion(MagLIF) concept on the Z-machine, the primary backlighting missions of ZBL and ZPW have been adjusted accordingly. As a result, we have focused our recent efforts on increasing the output energy of ZBL from 2 to 4 kJ at 527 nm by modifying the fiber front end to now include extra bandwidth(for stimulated Brillouin scattering suppression). The MagLIF concept requires a well-defined/behaved beam for interaction with the pressurized fuel. Hence we have made great efforts to implement an adaptive optics system on ZBL and have explored the use of phase plates. We are also exploring concepts to use ZPW as a backlighter for ZBL driven MagLIF experiments. Alternatively, ZPW could be used as an additional fusion fuel pre-heater or as a temporally flexible high energy pre-pulse. All of these concepts require the ability to operate the ZPW in a nanosecond long-pulse mode, in which the beam can co-propagate with ZBL. Some of the proposed modifications are complete and most of them are well on their way. 展开更多
关键词 adaptive optics high energy lasers maglif OPCPA petawatt lasers SBS suppression
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