首页> 外文期刊>Fusion Engineering and Design >Breeding blanket system design implications on tritium transport and permeation with high tritium ion implantation: A MATLAB/Simulink, COMSOL integrated dynamic tritium transport model for HCCR TBS
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Breeding blanket system design implications on tritium transport and permeation with high tritium ion implantation: A MATLAB/Simulink, COMSOL integrated dynamic tritium transport model for HCCR TBS

机译:高blanket离子注入的育种毯系统设计对tri运输和渗透的影响:HCCR TBS的MATLAB / Simulink,COMSOL集成动态dynamic运输模型

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摘要

An integrated, multi-physics, dynamic predictive tool to quantify tritium retention, removal, and permeation for HCCR Test Blanket System (TBS) is presented in this paper. The tool expands from detailed COMSOL component models developed previously at UCLA, into an integrated, system-level blanket model using MATLAB/Simulink. It aims at achieving self-consistent predictions in particular concerning dynamic tritium concentration built-up in the He coolant. The integration is achieved by implementing COMSOL component models in the discrete section of Simulink S-Functions. The model replicates HCCR TBS process flow diagram and preserves main tritium flow characteristics for both helium cooling and tritium extraction systems. Current results demonstrate importance of detailed component models as well as dynamic simulation for improved accuracy on answers to questions related to safety/licensing and designs.
机译:本文提出了一种集成的多物理场动态预测工具,用于量化HCCR测试毯系统(TBS)的retention保留,去除和渗透。该工具从以前在UCLA开发的详细COMSOL组件模型扩展到使用MATLAB / Simulink的集成的系统级毯式模型。它旨在实现自洽的预测,尤其是关于He冷却剂中累积的动态tri浓度的预测。通过在Simulink S-Functions的不连续部分中实现COMSOL组件模型来实现集成。该模型复制了HCCR TBS工艺流程图,并保留了氦冷却和tri提取系统的主要tri流动特性。当前结果表明,详细的组件模型以及动态仿真对于提高安全性,许可和设计相关问题的答案的准确性的重要性。

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