Dynamic of shock–bubble interactions and nonlinear evolution of ablative hydrodynamic instabilities initialed by capsule interior three-dimensional isolated defects
编号:78 访问权限:仅限参会人 更新:2025-04-03 14:19:36 浏览:3次 张贴报告

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摘要
The shock-bubble interaction (SBI) process remains a significant and open topic of investigation due to its importance in a wide range of physical systems.  The SBI induced by isolated defects within the capsule in inertial confinement fusion (ICF), and the subsequent hydrodynamic instabilities, are considered a contributing factor to implosion performance degradation. However, the inherent three-dimensionality and nonlinearity of defects have hindered detailed studies of their evolution. This paper utilizes a three-dimensional (3D) planar shell model driven by laser to study this problem, incorporating isolated low-density defects at various locations within the shell. The vortical dynamics of SBI from 3D spherical and cylindrical defects are revealed. The 3D vortex ring motion induced by spherical defects was found to be significantly faster, resulting in less influence on the ablation front compared to the cylindrical defect under the same conditions, instead producing jets penetrating into the shell interior.  A systematic study of localized perturbation growth as a function of 3D defect placement, size is presented.
关键词
inertial confinement fusion,,shock-bubble interaction,hydrodynamic instabilities
报告人
刘云星
博士后 上海激光等离子体研究所

稿件作者
刘云星 上海激光等离子体研究所
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    05月12日

    2025

    05月15日

    2025

  • 03月26日 2025

    初稿截稿日期

  • 04月30日 2025

    提前注册日期

  • 05月15日 2025

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