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Application of Computational Fluid Dynamics analysis to the design of liquid metal technology for fusion devices

机译:计算流体动力学分析在聚变设备液态金属技术设计中的应用

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Engineering design of fusion reactors constitutes a clear challenge for the need to overcome several new technological edges in almost every engineering aspect, from the magnetic to the material technology passing trough the thermal engineering design. Safety assessment of fusion reactors should be clearly provided to the Regulatory Bodies for licencing. For this reason, the availability of well proven and validated engineering tools is a must. Computational Fluid Dynamics (CFD) analysis seems to be one of these tools for the thermal-hydraulic and magneto-hydrodynamic (MHD) design of some components. Many of current design of some components as blanket modules for Tritium generation uses liquid metals as of its key components. The implementation of turbulence and other thermal-hydraulic and MHD features in available CFD codes are discussed in this paper, pointing out the need for international collaboration to improve these available engineering tools for its confidence application with liquid metal in fusion engineering.
机译:聚变反应堆的工程设计面临着一个严峻的挑战,即需要克服几乎所有工程方面的新技术优势,从磁技术到通过热工程设计的材料技术。聚变反应堆的安全评估应明确提供给监管机构进行许可。因此,必须提供可靠且经过验证的工程工具。计算流体动力学(CFD)分析似乎是用于某些组件的热液压和磁流体动力学(MHD)设计的这些工具之一。当前一些作为as生成模块的组件的设计中很多都使用液态金属作为其关键组件。本文讨论了可用的CFD代码中湍流以及其他热工液压和MHD功能的实现,指出需要国际合作来改善这些可用的工程工具,以使其在熔融工程中与液态金属相得益彰。

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