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管道连接装配型ITER增强热负荷第一壁的热工水力分析
引用本文:吴晶,谌继明,王平怀,王正裕,康伟山,高翚.管道连接装配型ITER增强热负荷第一壁的热工水力分析[J].核聚变与等离子体物理,2022,42(1):28-34.
作者姓名:吴晶  谌继明  王平怀  王正裕  康伟山  高翚
作者单位:(1. 核工业西南物理研究院,成都 610041;2. 成都优仿科技有限公司,成都 610041)
摘    要:对管道连接装配型ITER增强热负荷第一壁(EHF FW)的标准手指对、边缘手指对及中心梁(CB)开展了热工水力分析.分析结果显示流速分布合理,低于1m·s-1或高于10m·s-1的区域非常小;手指对间的流量分配较合理;整个第一壁的压降为0.351MPa,小于0.4MPa的限定值;在8个循环周期内CB最高温度为409.2...

关 键 词:ITER  增强热负荷第一壁  热工水力分析
收稿时间:2020-04-21

Thermal hydraulic analysis for ITER enhanced heat flux first wall of pipe joint assembly type
WU Jing,CHEN Ji-ming,WANG Ping-huai,WANG Zheng-yu,KANG Wei-shan,GAO Hui.Thermal hydraulic analysis for ITER enhanced heat flux first wall of pipe joint assembly type[J].Nuclear Fusion and Plasma Physics,2022,42(1):28-34.
Authors:WU Jing  CHEN Ji-ming  WANG Ping-huai  WANG Zheng-yu  KANG Wei-shan  GAO Hui
Institution:(1. SouthwesternInstituteofPhysics,Chengdu610041; 2. Chengdu Youfang Ltd. Inc,Chengdu610041)
Abstract:Thermal hydraulic analysis for ITER enhanced heat flux (EHF) first wall (FW) of standard finger pair, edge finger pair and central beam (CB) of pipe joint assembly type is carried out. Analysis results show that the velocity distribution is reasonable and regions where coolant velocity is lower than 1m·s-1 or higher than 10m·s-1 are very small, mass flow distribution between finger pairs is rather reasonable, and the pressure drop for whole EHF FW is 0.351MPa lower than 0.4MPa, the limited value. The maximum temperature of CB during 8 burn and dwell cycles is about 409.21℃ within the allowable value of 450℃, however, the highest temperature in the sharp corner region of beryllium armor on the edge finger is 846.54℃, which requires high heat load experiment to verify its safety.
Keywords: ITER  EHF FW  Thermal hydraulic analysis  
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