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MODELING TRITIUM TRANSPORT IN PBLI BREEDER BLANKETS UNDER STEADY STATE

机译:稳态下PBLI胶布毛毯中的RIT运输模型

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摘要

Tritium behavior in the breeder/coolant plays a crucial role in keeping the tritium loss under an allowable limit and realizing high tritium recovery efficiency. In this paper, progress toward the development of a comprehensive 3D predictive capability is discussed and presented. The sequence of transport processes leading to tritium release includes diffusion and convection through the PbLi, transfer across the liquid/solid interface, diffusion of atomic tritium through the structure, and dissolution-recombination at the solid/gas interface. Numerical simulation of the coupled individual physics phenomena of tritium transport is performed for DCLL/HCLL type breeder blankets under realistic reactor-like conditions in this paper. Tritium concentration and permeation are presented and the MHD effects are evaluated. Preliminary results shows that the MHD velocity profile has the significant effect in preventing tritium permeation due to the higher convection effects near the wall.
机译:breed /冷却液中的behavior行为对于将loss损失保持在允许的范围内并实现高recovery回收效率起着至关重要的作用。在本文中,讨论并提出了向综合3D预测能力发展的进展。导致tri释放的传输过程的顺序包括通过PbLi的扩散和对流,通过液/固界面的转移,通过结构的原子tri的扩散以及在固/气界面的溶解-复合。本文在现实的类似反应堆的条件下,对DCLL / HCLL型繁殖毯进行了transport运输耦合的单个物理现象的数值模拟。介绍了concentration的浓度和渗透性,并评估了MHD效果。初步结果表明,由于壁附近的对流效应较高,MHD速度剖面在防止tri渗透方面具有显着效果。

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  • 来源
    《Fusion technology》 |2011年第2期|p.814-818|共5页
  • 作者单位

    Mechanical and Aerospace Engineering Depl, UCLA, Los Angeles, CA 90095, USA;

    Mechanical and Aerospace Engineering Depl, UCLA, Los Angeles, CA 90095, USA;

    Mechanical and Aerospace Engineering Depl, UCLA, Los Angeles, CA 90095, USA;

    Idaho National Laboratory, Idaho Falls, ID 83415, USA;

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