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靶丸支撑膜对ICF内爆性能影响的模拟研究 被引量:5

Influence of Capsule Support Tent on ICF Capsule Implosion Performance:Simulation Study
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摘要 使用二维多群辐射扩散流体力学程序LARED-S,模拟研究靶丸支撑膜在惯性约束聚变氘氘(DD)气体靶内爆过程中的扰动演化过程及其对内爆性能的影响.二维模拟表明:靶丸支撑膜显著降低DD气体靶内爆的中子产额,二维模拟产额为一维结果的55.2%.内爆性能下降的主要物理机制是支撑膜使靶壳生成大幅度的尖钉深入DD气体区,使烧蚀层与DD气体之间物质界面处的电子热传导漏失功率显著增大,导致DD核反应速率显著降低,中子反应速率峰值时刻(bang-time时刻)提前.相比一维理想内爆的模拟结果,支撑膜引入的扰动显著降低bang-time时刻DD气体压强与内爆动能转化为DD气体内能的效率,壳层剩余动能相应大幅增加. Influence of capsule support tent on ICF DD gas implosion performance is investigated with a two-dimensional radiation diffusion hydrodynamic code LARED-S.It shows that the support tent reduces significantly the neutron yield with a YOC(yield over clean)of 55.2%.The main degradation mechanism is that the capsule shell produces high-amplitude high-density spikes,penetrating deep into the central DD gas.It increases greatly power loss due to electron conduction on the CH/DD interface,leading to the rapid reduction of DD reaction rate and final neutron yield.Compared with one-dimensional ideal implosion simulation result,bang-time of the two-dimensional tent simulation is apparently earlier,and perturbations introduced by the capsule support tent reduce the central pressure and internal energy of DD gas,which is converted from the shell implosion kinetic energy.
作者 谷建法 葛峰峻 戴振生 邹士阳 GU Jianfa;GE Fengjun;DAI Zhensheng;ZOU Shiyang(Institute of Applied Physics and Computational Mathematics,Beijing 100088,China)
出处 《计算物理》 CSCD 北大核心 2020年第6期631-638,共8页 Chinese Journal of Computational Physics
基金 国家重点研发计划项目(2017YFA0403204) 国家自然科学基金(11575034)资助项目。
关键词 惯性约束聚变 靶丸支撑膜 流体力学不稳定性 内爆性能 inertial confinement fusion capsule support tent hydrodynamic instability implosion performance
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  • 1AtzeniS,Meyer-ter-VehnJ.惯性约束聚变[M].沈百飞,译.北京:科学出版社,2008. 被引量:1
  • 2Lindl J D, Amendt P, Berger R L, et al. The physics basis for ignition using indirect-drive targets on the National Ignition Facility[J]. Phys Plasmas, 2004, 11(2): 339 -491. 被引量:1
  • 3Amendt P, Cerjan C, Hamza A, et al. Assessing the prospects for achieving double-shell ignition on the National Ignition Facility using vacuum hohlraums [ J]. Physics of Plasmas, 2007, 14 : 056312. 被引量:1
  • 4Cavailler C, Inertial fusion with the LMJ[ J]. Plasma Phys Control Fusion, 2005, 47:B389 -B403. 被引量:1
  • 5Ebrardt J, Chaput J M. LMJ project status[ J]. Journal of Physics: Conference Series, 2008, 112:032005. 被引量:1
  • 6Laffite S, Loiseau P. Design of an ignition target for the laser megajoule, mitigating parametric instabilities[ J]. Physics of Plasmas, 2010, 17: 102704. 被引量:1
  • 7Lan K, Gu P J, Ren G L, et al. An initial design of hohlraum driven by a shaped laser pulse[J]. Laser and Particle Beams, 2010, 28(03) : 421 -427. 被引量:1
  • 8Wu C S, Pei W B, Zhu S P, et al. Driven symmetry study for capsule implosion in indirect drive laser fusion[ C]. Palais des Congres de Bordeaux, France: The Ninth International Conference on Inertial Fusion Sciences and Applications, 2011. 被引量:1
  • 9Li J H, Gu P J, Zhai C L, et al. Advances in LARED-integration and its application to simulations of ICF hohlraum [ C ]. Stockholm, Sweden: 39th European Physical Society Conference, 2012. 被引量:1
  • 10Li J H, Zhai C L, Li S G, et al. Development of out laser fusion integration simulation[ C ]. Palais des Congres de Bordeaux, France: The Ninth International Conference on Inertial Fusion Sciences and Applications, 2011. 被引量:1

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