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On the numerical assessment of the thermal-hydraulic operating map of the DEMO Divertor Plasma Facing Components cooling circuit

机译:关于演示偏移等离子体面向部件冷却回路的热液压操作图的数值评估

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摘要

Within the framework of the Work Package DIV 1 "Divertor Cassette Design and Integration" of the EUROfusion action, a research campaign has been jointly carried out by University of Palermo and ENEA to investigate the thermal-hydraulic behaviour of the DEMO divertor cassette cooling system, focussing the attention on the 2018 configuration of the Plasma Facing Components (PFCs) circuit consistent with the DEMO baseline 2017. 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.A steady-state CFD analysis has been carried out for the PFCs cooling circuit under nominal conditions and its thermal-hydraulic performances have been assessed in terms of coolant total pressure drop, flow velocity and Critical Heat Flux (CHF) margin distributions among the Plasma Facing Units (PFUs) channels, to check whether they comply with the corresponding limits. Results obtained have clearly predicted a total pressure drop of approximate to 1.7 MPa, slightly higher than the prescribed limit of 1.4 MPa, as well as a sufficient margin against CHF onset, higher than 1.4 except for three IVT PFU channels where a minimum value of 1.39 is predicted.Moreover, a parametric study has been performed in order to assess the operating map of the cooling circuit in the phase-space of coolant inlet temperature, pressure and mass flow rate, to be intended as that domain where the circuit thermal-hydraulic performances let it stay within the prescribed requirements.Models, loads and boundary conditions assumed for the analyses are herewith reported and critically discussed, together with the main results obtained.
机译:在Work Package of The Work Package 1“Verfertor Cassette设计和集成”的框架内,通过巴勒莫大学和ENEA共同开展了一项研究活动,研究了演示档案盒式磁带冷却系统的热液压行为,侧重于对2018年配置的关注与演示基线的等离子体面向组件(PFCS)电路的配置。在基于有限体积法和采用商业计算流体动态的理论计算方法之后进行了研究活动。 (CFD)代码ANSYS CFX.A稳态CFD分析已经为PFCS冷却电路进行了标称条件下的,并且在冷却剂总压降,流速和临界热通量方面已经评估了其热液压性能(CHF )等离子体面向单元(PFU)通道之间的边缘分布,检查它们是否符合相应的限制s。所获得的结果清楚地预测了近似为1.7MPa的总压降,略高于1.4MPa的规定限值,以及足够的针对CHF发作的余量,除了3个IVT PFU通道,其中最小值为1.39已经预测。已经执行了参数研究,以便评估冷却剂入口温度,压力和质量流量的相位空间中冷却回路的操作图,以旨在作为电路热液压的域表演让它保持在规定的要求内。在此目的下,假设的典型,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》 |2020年第12期|111919.1-111919.7|共7页
  • 作者单位

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

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

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

    Max Planck Inst Plasma Phys E2M Boltzmann Str 2 D-85748 Garching Germany;

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

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

  • 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; Plasma facing components; Thermofluid-dynamics; CFD analysis;

    机译:演示;偏转器;等离子体面向组件;热流体 - 动力学;CFD分析;

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