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THERMO-HYDRAULIC ANALYSIS OF THE OPTIMIZED HELIUM COOLED SOLID BREEDER BLANKET FOR CFETR

机译:优化的CFET氦冷却固态混合器毛毯的热工液压分析

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China Fusion Engineering Test Reactor (CFETR) is under design recently, in which a conceptual structure of the helium-cooled solid breeder blanket is proposed as one of the candidate tritium breeding blankets. In this concept, three radial arranged U-shaped breeding zones are designed and optimized for higher Tritium Breeding Ratio (TBR) and structure simplification. This blanket uses the Li_4SiO_4 lithium ceramic pebbles as the breeder, while beryllium pebbles as the neutron multiplier. In this paper, the thermal and fluid dynamic analyses of the optimized typical outboard blanket module are performed by CFD method, where the nuclear heating rate is obtained from the preliminary neutronics calculations. The thermal hydraulic behaviors of the first wall (FW), the temperature distributions of submodule structure material, Li_4SiO_4 pebble bed and Beryllium pebble bed under normal and critical conditions are calculated, respectively. The results show that the temperature on the blanket module can be effectively cooled below allowable temperature limits of the materials, even if the FW is suffering the maximum surface heat flux, which verified the reasonability of the design of the blanket cooling scheme. In addition, several parametric sensitivity studies are conducted to investigate the influences of main parameters (e.g. coolant mass flow rate, inlet temperature, pebble bed thermal conductivity and fusion power) on the temperature distributions of the blanket components.
机译:中国聚变工程试验堆(CFETR)最近正在设计中,其中提出了氦冷却的固体育种毯的概念结构作为候选的breed育毯之一。在此概念中,设计并优化了三个放射状排列的U形繁殖区,以实现更高的Tri繁殖率(TBR)和简化结构。该毯子使用Li_4SiO_4锂陶瓷小石作为育种剂,而铍小石用作中子倍增器。在本文中,通过CFD方法对优化的典型舷外橡皮布模块进行了热和流体动力学分析,其中核加热速率是通过初步中子学计算获得的。分别计算了第一壁(FW)的热工水力行为,子模块结构材料,Li_4SiO_4卵石床和铍卵石床在正常和临界条件下的温度分布。结果表明,即使FW受到最大的表面热通量,毯式模块的温度也可以有效地冷却到材料允许的温度极限以下,这证明了毯式冷却方案设计的合理性。此外,进行了几项参数敏感性研究,以研究主要参数(例如,冷却剂质量流量,入口温度,卵石床导热率和聚变功率)对橡皮布组件温度分布的影响。

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