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Design and analysis of the equatorial inboard WCCB blanket module for CFETR

机译:CFETRIAL赤道内舷内毯子模块的设计与分析

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摘要

The blanket system is a key component to fulfill tritium breeding and nuclear energy conversion in the fusion reactor. This paper reports and presents the design and analysis of an equatorial inboard water-cooled ceramic breeder (WCCB) blanket module for Chinese Fusion Engineering Test Reactor (CFETR). The detailed structure design and the schematics of coolant flow scheme optimization has been presented. Based on the design model, a global model of the equatorial inboard WCCB blanket module has been established by the ANSYS code. Preliminary thermal-hydraulic performance of the blanket module is investigated which suggests that the cooling system inside the blanket module should be optimized. Then, optimization design has been done, the analysis results shows that the temperature distribution is reasonable and within the allowable temperature. Further thorough thermal-hydraulic and mechanical analysis have been studied to validate the feasibility of the design. Three scenarios (normal operation/LOCA occurs during plasma startup/LOCA occurs during normal operation) were postulated to evaluate the design rationality, and the results were assessed with ITER SDC-IC. Optimization results imply that the design of the equatorial inboard WCCB blanket module can meet the design requirements.
机译:毯子系统是满足融合反应器中氚育种和核能转换的关键组成部分。本文报告并介绍了用于中国融合工程试验反应器(CFetr)的赤道内舷内水冷陶瓷饲养员(WCCB)毯模块的设计和分析。已经介绍了冷却剂流量方案优化的详细结构设计和原理图。基于设计模型,ANSYS代码建立了赤道内舷内WCCB毯模块的全局模型。研究了橡皮布模块的初步热液压性能,这表明应优化毯子模块内的冷却系统。然后,已经完成了优化设计,分析结果表明温度分布是合理的并且在允许温度内。已经研究了进一步彻底的热液压和机械分析,以验证设计的可行性。假设三种情况(在正常操作期间发生在正常操作期间发生正常操作/基因座),以评估设计合理性,并通过ITER SDC-IC评估结果。优化结果意味着赤道内舷内WCCB毯子模块的设计可以满足设计要求。

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