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DEVELOPMENT OF A THERMAL-HYDRAULIC CODE FOR CHINESE HELIUM- COOLED CERAMIC BREEDER TBM COOLING SYSTEM

机译:中国氦气冷却陶瓷饲养员TBM冷却系统的热液压规范

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Helium was chosen as the coolant for divertor cooling loop, Korea helium cooled solid breeder TBM, European helium cooled pebble bed TBM and Chinese helium cooled ceramic breeder TBM. The thermal-hydraulic analysis for the divertor cooling loop and the TBM cooling systems were carried out by RELAP5 and MELOCR codes, which were developed for transient simulation of light water reactor coolant system during postulated accidents. In this study, a thermal-hydraulic and safety analysis code (TSACO) for helium cooling system was developed and calculation of the Chinese HCCB TBM cooling system was presented. Heat transfer and flow friction models for helium were added in the code. First, the code was verified by comparing with the RELAP5 code with the same initial and boundary conditions. The first wall temperature, pressure drop and inlet/outlet temperatures were studied and a good agreement was obtained, then ex-vessel loss of coolant accident for Chinese HCCB-TBM cooling system was investigated using TSACO. The results show that the TBM can be cooled efficiently and the TCWS pressure stays within the design limits with a large margin.
机译:选择氦作为转栓冷却回路的冷却剂,韩国氦气冷却固体种植床,欧洲氦气冷却卵石床TBM和中国氦气冷却陶瓷饲养员TBM。转移器冷却回路和TBM冷却系统的热液压分析由RETAP5和熔融码进行,这是在假设事故期间开发的用于轻型水反应器冷却剂系统的瞬态模拟。在该研究中,发达了一种氦冷却系统的热液压和安全分析码(TSACO),并提出了中国HCCB TBM冷却系统的计算。在代码中添加了氦的传热和流动摩擦模型。首先,通过与具有相同初始和边界条件的Relap5代码进行比较来验证代码。研究了第一壁温度,压降和入口/出口温度,并获得了良好的一致性,然后使用TSACO研究了中国HCCB-TBM冷却系统的冷却剂事故的前血管丧失。结果表明,TBM可以有效地冷却,TCWS压力在具有大边距的设计限制内。

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