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Thermal-hydraulic study of the DEMO divertor cassette body cooling circuit equipped with a liner and two reflector plates

机译:演示档案盒式盒式冷却回路的热液压研究配备衬里和两个反射板

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摘要

In the framework of the Work Package DIV 1 & ndash; & ldquo;Divertor Cassette Design and Integration & rdquo; of the EUROfusion action, a research campaign has been jointly carried out by University of Palermo and ENEA to investigate the steady-state thermal-hydraulic performances of the DEMO divertor cassette cooling system. The research activity has been focussed onto the most recent design of the Cassette Body (CB) cooling circuit, consistent with the DEMO baseline 2017 and equipped with a liner and two Reflector Plates (RPs), whose main functions are to protect the underlying vacuum pump hole from the radiation arising from plasma and shield the PFCs inlet distributors, respectively. The research campaign has been carried out following a theoretical-computational approach based on the finite volume method and adopting the commercial Computational Fluid-Dynamic (CFD) code ANSYS-CFX. The CB thermal-hydraulic performances have been assessed in terms of coolant and structure temperature, coolant overall total pressure drop and flow velocity distribution, mainly in order to check coolant aptitude to provide a uniform and effective cooling to CB, liner and RPs structures. Moreover, the margin against coolant saturation has been evaluated in order check whether any risk of its bulk vaporisation is prevented. The outcomes of the study have shown some criticalities, mainly in terms of coolant bulk vaporisation occurrence at the corner of the Inner Vertical Target (IVT) and uneven coolant flow distribution among RPs plasma-facing channels, that have suggested some design variations whose effectiveness has been numerically assessed. In particular, the solution proposed to contain and reduce the critical region of the IVT corner has been predicted to be particularly effective, while further studies are needed to improve coolant flow distribution among the RPs plasma-facing channels. Models, loads and boundary conditions assumed for the analyses are herewith reported and critically discussed, together with the main results obtained.
机译:在工作包第1和Ndash的框架中; “ Vertior Cassette设计和集成”在Eurofusion行动中,一项研究活动由巴勒莫大学和恩亚共同开展,研究了演示档案盒冷却系统的稳态热液力性能。研究活动一直专注于盒式机体(CB)冷却回路的最新设计,与演示基线2017一致,并配备衬里和两个反射板(RPS),其主要功能是保护底层真空泵来自等离子体引起的辐射的孔并分别屏蔽PFCS入口分配器。该研究活动在基于有限体积法和采用商业计算流体 - 动态(CFD)代码ANSYS-CFX的理论计算方法之后进行了遵循。 CB热液压性能已经在冷却剂和结构温度,冷却剂整体总压降和流速分布方面进行了评估,主要是为了检查冷却剂的能力,为CB,衬里和RPS结构提供均匀和有效的冷却。此外,已经评估了对冷却剂饱和度的余量,以检查是否防止了其散热化的任何风险。该研究的结果表明了一些临界性,主要是在内部垂直目标(IVT)角落的冷却剂块状蒸发发生方面,以及RPS等离子体频道之间的不均匀冷却剂流量分布,这表明了一些有效性的设计变化在数值评估。特别地,已经预测所提出的解决方案包含和减少IVT拐角的临界区域是特别有效的,而需要进一步研究以改善rps等离子体的通道之间的冷却剂流量分布。假设分析的模型,负载和边界条件在此报道并批判性地讨论,以及获得的主要结果。

著录项

  • 来源
    《Fusion Engineering and Design》 |2021年第6期|112227.1-112227.9|共9页
  • 作者单位

    Univ Palermo Dept Engn Viale Sci d 6 I-90128 Palermo Italy;

    ENEA CR Frascati Dept Fus & Technol Nucl Safety & Secur Via Fermi 45 I-00044 Rome Italy;

    Univ Palermo Dept Engn Viale Sci d 6 I-90128 Palermo Italy;

    Univ Palermo Dept Engn Viale Sci d 6 I-90128 Palermo Italy;

    Max Planck Inst Plasma Phys E2M Boltzmann Str 2 Garching Germany;

  • 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

    DEMO; Divertor; Cassette body; Thermofluid-dynamics; CFD analysis;

    机译:演示;骨折;盒式体;热流体 - 动力学;CFD分析;
  • 入库时间 2022-08-19 02:22:55

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