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

Fatigue assessment of the structural steel in superconducting coils for tokamaks

N Mitchell1992年Fusion Engineering and DesignIF 1.7出版社

AbstractSuperconducting coils for large tokamaks must incorporate appreciable (∼ 50%) fractions of structural material, typically steel, to support the magnetic forces. The coils are either themselves pulsed or see pulsed fields and fatigue considerations are important in deriving the allowable operating stresses. The allowable stresses are dependent on the way the steel is incorporated in the coil.

この論文にはまだAI要約がありません。

関連論文

A continuous winding scheme for superconducting tokamak coils with cable-in-conduit conductor

2001Fusion Engineering and Design

Design and experimental investigation of the ability of large superconducting magnets to operate under nuclear heating

1989Fusion Engineering and Design

Design and verification of superconducting magnet supports in the ITER magnet cold test bench

2025Nuclear Fusion

Present status of superconducting magnets design for the Large Helical Device

1993Fusion Engineering and Design

Power balance and stress problems of internal-conductor systems

1975Nuclear Fusion

Research and development of superconductors and superconducting coils for the Large Helical Device

1993Fusion Engineering and Design

Requirements for accuracy of superconducting coils in the Large Helical Device

1993Fusion Engineering and Design

ITER magnet design and R&D

1999Fusion Engineering and Design

Development of advanced superconducting coil technologies for the National Centralized Tokamak

2005Nuclear Fusion

A tokamak with nearly uniform coil stress based on the virial theorem

2004Nuclear Fusion