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Analysis on the influencing factors of radioactive tritium leakage and diffusion from an indoor high‑pressure storage vessel

Analysis on the influencing factors of radioactive tritium leakage and diffusion from an indoor high-pressure storage vessel

作     者:Chang‑Jun Li Xing‑Fu Cai Ming‑Qing Xiao Yong‑Gang Huo Peng Xu Su‑Fen Li Xiao‑Yan Cao Chang-Jun Li;Xing-Fu Cai;Ming-Qing Xiao;Yong-Gang Huo;Peng Xu;Su-Fen Li;Xiao-Yan Cao

作者机构:Xi’an Research Institute of High-TechXi’an 710025China Air Force Engineering UniversityXi’an 710051China 

出 版 物:《Nuclear Science and Techniques》 (核技术(英文))

年 卷 期:2022年第33卷第12期

页      面:1-11页

核心收录:

学科分类:080802[工学-电力系统及其自动化] 0808[工学-电气工程] 08[工学] 

基  金:supported by the Youth Innovation Team of Shaanxi Universities and the Pre-research Fund(No.50926050408) 

主  题:Tritium leakage Leakage orifice shape Leakage position Obstacles 

摘      要:Radioactive tritium leakage from high-pressure storage vessels is a common nuclear leakage *** leakage conditions have different effects on tritium diffusion,resulting in different degrees of radioactive *** study focuses on tritium leakage from high-pressure storage vessels and analyzes the influence of different leakage orifice shapes,leakage positions,and the presence of obstacles in the scene space on tritium leakage *** results show that there is little difference in the radial diffusion velocity of tritium gas along the jet axis between circular and square leakage *** radial diffusion velocity of tritium gas in the long-axis direction of the rectangular leakage orifice is larger than that in the short-axis direction,and the larger the aspect ratio of the rectangle is,the greater the difference is in the diffusion *** addition,leakage from the storage vessel below the air inlet is beneficial to the dilution of tritium,whereas leakage from the air vents leads to a slow decrease in the tritium *** obstacles present in the tritium scene space hinder the migration of tritium gas and prolong the time for the tritium concentration to reach *** study provides a theoretical basis for the disposal of tritium in tritium leakage accidents by analyzing the influence of different leakage conditions in storage vessels on tritium gas diffusion.

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