CFETR二期两种典型氦冷固体增殖堆包层模块概念设计及热工耦合优化分析

Shijie Cui, Dalin Zhang, W. Tian, G. Su, S. Qiu
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引用次数: 2

摘要

中国聚变工程试验反应堆(CFETR)是一个新的托卡马克试验装置,目前正在中国设计,以实现从国际热核实验反应堆(ITER)向未来聚变发电厂(FPP)的过渡。增殖包层是聚变反应堆的关键部件,主要负责氚的自给和聚变能的转换。近年来,CFETR第1期共提出了3种包层概念设计方案并进行了并行试验,其中氦冷固体增殖堆包层设计方案被认为是最有前途的方案。然而,目前CFETR的设计阶段已经逐渐从I阶段转变为II阶段,目标是未来的DEMO运行条件,其主要参数与之前有很大的不同。因此,有必要对新工况下的HCSB毯进行概念设计和各项分析。本文首先提出了二期工程HCSB毯层的新概念设计方案。然后,利用NTCOC对两种典型包层模块的径向构建布局进行优化。该工作可为CFETR二期HCSB包层的进一步概念设计和热工耦合分析提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceptual Design and Neutronics/Thermal-Hydraulic Coupling Optimization Analyses of Two Typical Helium Cooled Solid Breeder Blanket Modules for CFETR Phase II
Chinese Fusion Engineering Test Reactor (CFETR) is a new test Tokamak device which is now being designed in China to make the transition from the International Thermonuclear Experimental Reactor (ITER) to the future Fusion Power Plant (FPP). Breeding blanket is the key component of fusion reactor which is mainly responsible for the tritium self-sufficiency and fusion energy conversion. In the past few years, three kinds of blanket conceptual design schemes have been proposed and tested in parallel for CFETR Phase I, in which the helium cooled solid breeder (HCSB) blanket concept is acknowledged as the most promising one. However, nowadays, the design phase of CFETR has gradually changed from I to II aiming for the future DEMO operation condition, the main parameters of which are quite different from the previous one. Therefore, it’s necessary to perform conceptual design and various analyses for the HCSB blanket under the new working condition. In this work, firstly, a new conceptual design scheme of HCSB blanket for Phase II is put forward. Then, the radial build arrangements, of the two typical blanket modules are optimized by using the NTCOC. This work can provide valuable references for further conceptual design and neutronics/thermal-hydraulic coupling analyses of the HCSB blanket for CFETR Phase II.
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