143 / 2023-04-14 19:19:45
Simulation and assessment of material mixing in an indirect-drive implosion with a hybrid fluid-PIC code
Abstract Accepted
Hongbo Cai / Institute of Applied Physics and Computational Mathematics
Wenshuai Zhang / Institute of Applied Physics and Computational Mathematics
Fengjun Ge / Institute of Applied Physics and Computational Mathematics
Bao Du / Institute of Applied Physics and Computational Mathematics
Zhensheng Dai / Institute of Applied Physics and Computational Mathematics
Shiyang Zou / Institute of Applied Physics and Computational Mathematics
Yongkun Ding / Institute of Applied Physics and Computational Mathematics
Shaoping Zhu / Institute of Applied Physics and Computational Mathematics
Xiantu He / Institute of Applied Physics and Computational Mathematics
Hybrid fluid-PIC simulations aimed at a better understanding of the implosion physics and the material mixing into the hot spot are described. The development of a hybrid fluid-PIC code is motivated by the difficulty of modeling the material mixing by the commonly used radiation hydrodynamic simulations. Hybrid fluid-PIC techniques, which treat the ions with the traditional particle-in-cell method, and electrons with a massless fluid, are more adaptable to handle the heating of DT fuel through PdV work and the material mixing near the DT ice-gas interface and ablator-fuel interface of a compressed capsule. During implosion shock convergence, significant reactant temperature separation and a noticeable amount of material mixing are observed, both of which have important consequences for estimating neutron yield and the understanding of implosions. Physical explanations for these phenomena are discussed, with the non-equilibrium effect in the hotspot and hydrodynamic instabilities at the interface as the likely explanation, respectively. The hybrid fluid-PIC method would be helpful to test the phenomenological fluid model describing the material mixing in ICF implosion.

 
Important Date
  • Conference Date

    Jun 05

    2023

    to

    Jun 09

    2023

  • Apr 30 2023

    Early Bird Registration

  • May 01 2023

    Abstract Submission Deadline

  • May 01 2023

    Abstract Notification of Acceptance

  • May 01 2023

    Draft paper submission deadline

  • May 31 2023

    Registration deadline

Sponsored By
Science and Technology on Plasma Physics Laboratory
Department of Astronomy, Beijing Normal University
Organized By
Matter and Radiation at Extremes
Institute of Fluid Physics, China Academy of Engineering Physics, China
Institute of Applied Physics and Computational Mathematics, Beijing, China
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