VACUUM ›› 2023, Vol. 60 ›› Issue (6): 15-21.doi: 10.13385/j.cnki.vacuum.2023.06.03
• Measurement and Control • Previous Articles Next Articles
ZHANG Hong-xing1, SUI Xiao-xiang1, WANG Hai-jun1, LIU Zhong-hua1, CHEN Huai-dong1, ZHANG Hai-feng2
CLC Number: TL48;O359+.1
[1] 刘昱, 刘佩, 秦娟. 内陆核电厂放射性废液排放的主要问题分析[J]. 辐射防护, 2013, 33(5): 269-274. [2] GUOAN Y, HUI H, RUSHAN L, et al.R&D activities on actinide separation in China[J]. Procedia Chemistry, 2012, 7: 215-221. [3] 张贤山, 孙培伟, 魏新宇. 汽轮机蒸汽旁路排放系统的动态特性分析[J]. 核动力工程, 2021, 42(增刊2): 25-28. [4] 李开盈, 王旭, 陈松, 等. 核电厂凝汽器传热管缺陷处理与分析[J]. 产业与科技论坛, 2022, 21(7): 44-46. [5] 陈勇. 核电厂凝汽器泄漏的探究[J]. 科技视界, 2016(9): 8-11. [6] 李勇, 曹丽华, 赵金峰, 等. 考虑更多因素的凝汽器最佳真空确定方法[J]. 中国电机工程学报, 2006(4): 71-75. [7] 叶长流, 黄怡彬, 郭昂, 等. 凝汽器泄漏对二回路水质的影响及其对策研究[C]//中国核学会2017年学术年会. 2017: 261-266. [8] 何洁, 高虎, 何鹰. 核电站凝汽器检漏装置的设计及应用[J]. 装备制造技术, 2013(9): 146-148. [9] 季怡萍, 邓先钦, 徐鹏, 等. SF6气体泄漏红外成像检测的技术分析和应用探讨[J]. 红外技术, 2022, 44(2): 198-204. [10] 陈大兵, 丁辉, 李晓红, 等. 电厂凝汽器管泄漏的在线检测[J]. 江苏电机工程, 2004(4): 46-47. [11] 王建夫, 张志胜, 安国印, 等. 气体示踪技术在盐穴地下储气库微泄漏监测中的应用[J]. 天然气工业, 2021, 41(12): 156-164. [12] 窦梓元. 水体中天然气管道泄漏扩散规律及后果分析[D]. 成都: 西南石油大学, 2015. [13] KELSO R M, LIM T T, PERRY A E.An experimental study of round jets in cross-flow[J]. Journal of Fluid Mechanics, 2006, 306: 111-144. [14] LIM T T, NEW T H, LUO S C.On the development of large-scale structures of a jet normal to a cross flow[J]. Physics of Fluids, 2001, 13(3): 770-775. [15] 孙振平, 褚孝荣, 周李军. 核电厂凝汽器检漏系统的取样点设计要求和方案[J]. 电站辅机, 2015, 36(3): 9-11. [16] SONG Y, SHENTU Y, QIAN Y, et al.Experiment and modeling of liquid-phase flow in a venturi tube using stereoscopic PIV[J]. Nuclear Engineering and Technology, 2021, 53(1): 79-92. [17] 张珅榕, 蔡卫军, 闵景新. 基于欧拉多相流模型的空泡数值模拟[J]. 船海工程, 2015, 44(1): 103-106. [18] TROSHKO A A, HASSAN Y A.A two-equation turbulence model of turbulent bubbly flows[J]. International Journal of Multiphase Flow, 2001, 27(11): 1965-2000. [19] LATEB M, MASSON C, STATHOPOULOS T, et al.Comparison of various types of k-ε models for pollutant emissions around a two-building configuration[J]. Journal of Wind Engineering and Industrial Aerodynamics, 2013, 115: 9-21. [20] RISSO F.Agitation,mixing,and transfers induced by bubbles[J]. Annual Review of Fluid Mechanics, 2018, 50: 25-48. [21] 王杰, 刘东, 刘盈, 等. 失水事故分析程序临界流模型改进及验证[J]. 核动力工程, 2019, 40(1): 28-32. [22] 李乾军, 章名耀. 压力对喷动流化床流动特性影响的数值模拟[J]. 动力工程, 2009, 29(9): 831-836. |
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