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Advancement in tritium transport simulations for solid breeding blanket system

机译:固体繁殖毯系统system运输模拟的进展

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In this paper, advancement on tritium transport simulations was demonstrated for a solid breeder blanket HCCRTBS, where multi-physics and detailed engineering descriptions are considered using a commercial simulation code. The physics involved includes compressible purge gas fluid flow, heat transfer, chemical reaction, isotope swamping effect, and tritium isotopes mass transport. The strategy adopted here is to develop numerical procedures and techniques that allow critical details of material, geometric and operational heterogeneity in a most complete engineering description of the TBS being incorporated into the simulation. Our application focuses on the transient assessment in view of ITER being pulsed operations. An immediate advantage is a more realistic predictive and design analysis tool accounting pulsed operations induced temperature variations which impact helium purge gas flow as well as Q(2) composition concentration time and space evolutions in the breeding regions. This affords a more accurate prediction of tritium permeation into the He coolant by accounting correct temperature and partial pressure effects and realistic diffusion paths. The analysis also shows that by introducing by-pass line to accommodate ITER pulsed operations in the TES loop allows tritium extraction design being more cost effective. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,论证了固体繁殖毯HCCRTBS在tri运输模拟方面的进步,其中使用商业模拟代码考虑了多物理场和详细的工程描述。涉及的物理学包括可压缩吹扫气体的流动,传热,化学反应,同位素沼泽效应和tri同位素的质量迁移。此处采用的策略是开发数值过程和技术,以使材料,几何和操作异质性的关键细节能够纳入到TBS的最完整工程描述中,并包含在仿真中。考虑到ITER为脉冲操作,我们的应用重点是瞬态评估。一个直接的优势是,更实际的预测和设计分析工具能够解决脉冲操作引起的温度变化,这些温度变化会影响氦气吹扫气流以及Q(2)成分浓度的时间和繁殖区域的空间演变。通过考虑正确的温度和分压效应以及实际的扩散路径,可以更准确地预测tri渗透到He冷却液中。分析还表明,通过在TES环路中引入旁路线路以容纳ITER脉冲操作,可使tri提取设计更具成本效益。 (C)2015 Elsevier B.V.保留所有权利。

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