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Numerical studies on helium cooled divertor finger mock up with sectorial extended surfaces

机译:扇面扩展面氦冷却偏滤器指状件的数值研究

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摘要

Jet impinging technique is an advance divertor concept for the design of future fusion power plants. This technique is extensively used due to its high heat removal capability with reasonable pumping power and for safe operation. In this design, plasma-facing components are fabricated with numerous fingers cooled by helium jets to reduce the thermal stresses. The present study is focused towards finding an optimum performance of one such finger mock-up through systematic computational fluid dynamics (CFD) studies. Heat transfer characteristics of jet impingement have been numerically investigated with sectorial extended surfaces (SES). The result shows that addition of SES enhances heat removal potential with minimum pumping power. Detailed parametric studies on critical parameters that influence thermal performance of the finger mock-up have been analyzed. Thermo-mechanical analysis has been carried out through finite element based approach to know the state of stress in the assembly as a result of large temperature gradients. It is seen that the stresses are within the permissible limits for the present design. The whole numerical simulation has been carried out using general-purpose CFD software (ANSYS FLUENT, Release 14.0, User Guide, Ansys, Inc., 2011). Benchmark validation studies have been performed against high-heat flux experiments (B. Koncar, P. Norajitra, K. Oblak, Appl. Therm. Eng., 30, 697-705, 2010) and a good agreement is noticed between the present simulation and the reported results.
机译:射流冲击技术是用于未来聚变电站设计的先进分流器概念。由于该技术具有很高的排热能力,合理的泵送功率和安全操作性,因此被广泛使用。在这种设计中,制造的面向等离子体的部件具有许多由氦气射流冷却的指状件,以减少热应力。本研究的重点是通过系统的计算流体动力学(CFD)研究来找到一种这样的手指模型的最佳性能。射流冲击的传热特性已通过扇形扩展面(SES)进行了数值研究。结果表明,添加SES可以在最小泵送功率的情况下增强除热潜力。已经分析了影响手指模型的热性能的关键参数的详细参数研究。通过基于有限元的方法进行了热机械分析,以了解由于大温度梯度而导致的组件中的应力状态。可以看出,应力在本设计的允许范围内。整个数值模拟已使用通用CFD软件(ANSYS FLUENT,版本14.0,用户指南,Ansys,Inc.,2011)进行。已针对高热通量实验进行了基准验证研究(B. Koncar,P。Norajitra,K。Oblak,Appl。Therm。Eng。,2010年第30、697-705页),并且在当前模拟之间达成了良好的协议和报告的结果。

著录项

  • 来源
    《Fusion Engineering and Design》 |2014年第11期|2647-2658|共12页
  • 作者单位

    Divertor and First wall Technology Development Division, Institute for Plasma Research (IPR), Bhat 382428 Gandhinagar, Gujarat, India;

    Divertor and First wall Technology Development Division, Institute for Plasma Research (IPR), Bhat 382428 Gandhinagar, Gujarat, India;

    Divertor and First wall Technology Development Division, Institute for Plasma Research (IPR), Bhat 382428 Gandhinagar, Gujarat, India;

    Mechanics and Hydraulics Division, Reactor Design Group (RDG), Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam 603102, Tamilnadu, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Jet-impingement; CFD; Sectorial extended surfaces; Tile; Thimble; Fusion reactor;

    机译:射流冲击差价合约扇形延伸面;瓦;顶针;聚变反应堆;
  • 入库时间 2022-08-18 00:38:45

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