会议论文详细信息
10th Asia Plasma and Fusion Association Conference
Effect of Geometrical Imperfection on Buckling Failure of ITER VVPSS Tank
Kumar Jha, Saroj^1 ; Kumar Gupta, Girish^1 ; Kumar Pandey, Manish^1 ; Bhattacharya, Avik^1 ; Jogi, Gaurav^1 ; Kumar Bhardwaj, Anil^1
ITER-India, Institute for Plasma Research, Sangath Skyz, Bhat-Motera Road, Koteshwar, Ahmedabad, Gujarat
380005, India^1
关键词: ASME Section VIII;    Design by analysis;    Elastic-plastic analysis;    Geometrical imperfections;    ITER vacuum vessels;    Linear buckling analysis;    Proportionality factors;    Suppression systems;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/823/1/012052/pdf
DOI  :  10.1088/1742-6596/823/1/012052
来源: IOP
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【 摘 要 】

The 'Vacuum Vessel Pressure Suppression System' (VVPSS) is part of ITER machine, which is designed to protect the ITER Vacuum Vessel and its connected systems, from an over-pressure situation. It is comprised of a partially evacuated tank of stainless steel approximately 46 m long and 6 m in diameter and thickness 30 mm. It is to hold approximately 675 tonnes of water at room temperature to condense the steam resulting from the adverse water leakage into the Vacuum Vessel chamber. For any vacuum vessel, geometrical imperfection has significant effect on buckling failure and structural integrity. Major geometrical imperfection in VVPSS tank depends on form tolerances. To study the effect of geometrical imperfection on buckling failure of VVPSS tank, finite element analysis (FEA) has been performed in line with ASME section VIII division 2 part 5 [1], 'design by analysis method'. Linear buckling analysis has been performed to get the buckled shape and displacement. Geometrical imperfection due to form tolerance is incorporated in FEA model of VVPSS tank by scaling the resulted buckled shape by a factor '60'. This buckled shape model is used as input geometry for plastic collapse and buckling failure assessment. Plastic collapse and buckling failure of VVPSS tank has been assessed by using the elastic-plastic analysis method. This analysis has been performed for different values of form tolerance. The results of analysis show that displacement and load proportionality factor (LPF) vary inversely with form tolerance. For higher values of form tolerance LPF reduces significantly with high values of displacement.

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