FusionPapers
図版検索AI要約wiki日本の研究装置ジャーナルChatGPTAbout
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Energy gain of wetted-foam implosions with auxiliary heating for inertial fusion studies

R W Paddock, T S Li, E Kim, J J Lee, H Martin, R T Ruskov, S Hughes, S J Rose, C D Murphy, R H H Scott2024年Plasma Physics and Controlled FusionIF 2.2出版社

Low convergence ratio implosions (where wetted-foam layers are used to limit capsule convergence, achieving improved robustness to instability growth) and auxiliary heating (where electron beams are used to provide collisionless heating of a hotspot) are two promising techniques that are being explored for inertial fusion energy applications. In this paper, a new analytic study is presented to understand and predict the performance of these implosions. Firstly, conventional gain models are adapted to produce gain curves for fixed convergence ratios, which are shown to well-describe previously simulated results. Secondly, auxiliary heating is demonstrated to be well understood and interpreted through the burn-up fraction of the deuterium-tritium fuel, with the gradient of burn-up with respect to burn-averaged temperature shown to provide good qualitative predictions of the effectiveness of this technique for a given implosion. Simulations of auxiliary heating for a range of implosions are presented in support of this and demonstrate that this heating can have significant benefit for high gain implosions, being most effective when the burn-averaged temperature is between 5 and 20 keV.

wiki

Inertial confinement fusionFusion implosions
この論文にはまだAI要約がありません。

関連論文

Preliminary experiments on hohlraum-driven double-shell implosion at the ShenGuang-III laser facility

2018Nuclear Fusion

Laser-driven implosion of spherical shells

1975Nuclear Fusion

Theory of ignition and burn propagation in inertial fusion implosions

2020Physics of Plasmas

Beyond alpha-heating: driving inertially confined fusion implosions toward a burning-plasma state on the National Ignition Facility

2019Plasma Physics and Controlled Fusion

First integrated implosion experiments on the SG-III laser facility

2018Plasma Physics and Controlled Fusion

Correlations between asymmetric compression, burn amplification, and hot-spot velocities in inertial confinement fusion implosions

2023Physics of Plasmas

Active burn control of nearly ignited plasmas

1980Nuclear Fusion

Progress in hydrodynamics theory and experiments for direct-drive and fast ignition inertial confinement fusion

2006Plasma Physics and Controlled Fusion

Diagnosing indirect-drive inertial-confinement-fusion implosions with charged particles

2010Plasma Physics and Controlled Fusion

Review of hydrodynamic instability experiments in inertially confined fusion implosions on National Ignition Facility

2020Plasma Physics and Controlled Fusion