会议论文详细信息
10th Asia Plasma and Fusion Association Conference
Comparative analysis on flexibility requirements of typical Cryogenic Transfer lines
Jadon, Mohit^1 ; Kumar, Uday^1 ; Choukekar, Ketan^1 ; Shah, Nitin^1 ; Sarkar, Biswanath^1
ITER-India, Institute for Plasma Research, Sangath Skyz, Bhat-Koteshwar Road, Koteshwar, Gujarat
380005, India^1
关键词: Additional flexibilities;    Analytical calculation;    Comparative analysis;    Cryogenic transfer line;    Design constraints;    Flexibility analysis;    Flexible components;    Professional software;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/823/1/012042/pdf
DOI  :  10.1088/1742-6596/823/1/012042
来源: IOP
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【 摘 要 】

The cryogenic systems and their applications; primarily in large Fusion devices, utilize multiple cryogen transfer lines of various sizes and complexities to transfer cryogenic fluids from plant to the various user/ applications. These transfer lines are composed of various critical sections i.e. tee section, elbows, flexible components etc. The mechanical sustainability (under failure circumstances) of these transfer lines are primary requirement for safe operation of the system and applications. The transfer lines need to be designed for multiple design constraints conditions like line layout, support locations and space restrictions. The transfer lines are subjected to single load and multiple load combinations, such as operational loads, seismic loads, leak in insulation vacuum loads etc. [1]. The analytical calculations and flexibility analysis using professional software are performed for the typical transfer lines without any flexible component, the results were analysed for functional and mechanical load conditions. The failure modes were identified along the critical sections. The same transfer line was then refurbished with the flexible components and analysed for failure modes. The flexible components provide additional flexibility to the transfer line system and make it safe. The results obtained from the analytical calculations were compared with those obtained from the flexibility analysis software calculations. The optimization of the flexible component's size and selection was performed and components were selected to meet the design requirements as per code.

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