FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Energy gain of spherical shell targets in inertial confinement fusion

A.R. Piriz, J.G. Wouchuk1992年被引用 6Nuclear FusionIF 3出版社

An analytical model for the energy gain of a spherical shell target is developed. Realistic ignition profiles are calculated in a consistent way, taking into account the implosion phase. The restrictions on the hot spot size posed by the symmetry requirements are included in the model, and scaling relations for the fuel and the implosion parameters are obtained. The target gain is found to be strongly dependent on the ratio between the hot spot size and the initial target radius, whereas the preheating effects by radiation or hot electrons are seen to be less deleterious in this model than in previous models The presence of a relatively heavy layer around the fuel, which acts as a pusher during the implosion phase, has multiple effects on the energy gain

日本語訳

球殻ターゲットのエネルギー利得の解析モデルを開発する。爆縮位相を考慮し、現実的な点火プロファイルを整合的に計算する。対称性の要件によって課されるホットスポットサイズの制限をモデルに含め、燃料と爆縮パラメータのスケーリング則を得る。ターゲット利得は、ホットスポットサイズと初期ターゲット半径の比に強く依存することがわかった。一方、放射線や高温電子による予熱効果は、従来のモデルよりも本モデルでは有害性が低いことが示された。爆縮位相中にプッシャーとして機能する比較的重い層が燃料の周囲に存在することは、エネルギー利得に複数の影響を及ぼす。

wiki

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

関連論文

Energy gain and performance of ablatively driven shell targets

1994Nuclear Fusion

Laser driven implosion of high aspect ratio spherical shell target

1990Plasma Physics and Controlled Fusion

Ablative implosion of high-aspect-ratio gas-filled targets

1991Plasma Physics and Controlled Fusion

High gain DT targets for heavy ion beam fusion

1992Nuclear Fusion

Conditions for the ignition of imploding spherical shell targets

1996Nuclear Fusion

Energy scaling of inertial confinement fusion targets for ignition and high gain

1997Nuclear Fusion

Symmetry of illumination and implosion of hotraum targets for heavy ion inertial fusion

1993Nuclear Fusion

Scaling laws for the ignition of deuterium—tritium shell targets

1996Fusion Engineering and Design

Acceleration and deceleration model of indirect drive ICF capsules

2006Nuclear Fusion

Shell mass effect on the hot-spot pressure in inertial confinement fusion implosion

2021Physics of Plasmas