FusionPapers
AI要約装置ジャーナルChatGPTAbout
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Overview of the titan-II reversed-field pinch aqueous fusion power core design

C.P.C. Wong, R.L. Creedon, E.T. Cheng, TITAN Research Group, P.I.H. Cooke1989年Fusion Engineering and DesignIF 1.7出版社

TITAN-II is a compact, high-power-density Reversed-Field Pinch fusion power reactor design based on the aqueous lithium solution fusion power core concept. The selected breeding and structural materials are LiNO3 and 9-C low activation ferritic steel, respectively. TITAN-II is a viable alternative to the TITAN-I lithium self-cooled design for the Reversed-Field Pinch reactor to operate at a neutron wall loading of 18 MW/m2. Submerging the complete fusion power core and the primary loop in a large pool of cool water will minimize the probability of radioactivity release. Since the protection of the large pool integrity is the only requirement for the protection of the public, TITAN-II is a level 2 of passive safety assurance design.

この論文にはまだAI要約がありません。

関連論文

The TITAN-II reversed-field-pinch fusion-power-core design

1993Fusion Engineering and Design

Maintenance procedures for the TITAN-I and TITAN-II reversed field pinch reactors

1989Fusion Engineering and Design

The safety designs for the TITAN reversed-field pinch reactor study

1989Fusion Engineering and Design

Introduction and synopsis of the TITAN reversed-field-pinch fusion-reactor study

1993Fusion Engineering and Design

The TITAN-I reversed-field-pinch fusion-power-core design

1993Fusion Engineering and Design

Overview of the TITAN-I fusion-power core

1989Fusion Engineering and Design

Materials selection criteria and performance analysis for the TITAN-II reversed-field-pinch fusion power core

1993Fusion Engineering and Design

Activation and waste disposal of the TITAN RFP reactors

1989Fusion Engineering and Design

Safety design and radioactive-waste-disposal analysis for the TITAN-II reversed-field-pinch reactor design

1993Fusion Engineering and Design

Maintenance procedures and analysis for the TITAN reversed-field-pinch reactor designs

1993Fusion Engineering and Design